Descrizione del prodotto
v slot linear rail aluminum profiles for kinds of machines 55710
This adjustable, modular framing material, assembled with simple hand tools, is a perfect solution for custom machine frames, guarding, enclosures, displays, workstations, prototyping, and beyond.
Materiale: 6063 T5 Aluminum Alloy
Surface: Silver anodised
Size: 50x100mm
Weight: 4.6kg/m
Length: 50-6000mm/pc
Model number: LE-10-55710
We can offer you full set of v-slot aluminum extrusion profiles, fasteners and accessories.Please tell me your detailed requirements, we will quote a best prices to you.
| Product Name | 50x100mm Industrial aluminium profile/ aluminum extrusion |
| Profile Material | 6063 aluminium alloy |
| Temper | T5 |
| Surface treatment | Mill finish, powder coating, anodizing, wooden grain coating, polishing, eletrophoresis, PVDF, sanding blasting, etc. |
| The option of Profile | 15/20/30/40/60/80/90/100 series etc. |
| Slot width | 6MM,8MM,10MM |
| Color | Natural silver anodised, can be customised. |
| Surface | Mill finish, Anodizeding, Sand Blasting, Powder coating, etc. |
| Deep processing | Cutting, Drilling, Treading, Bending, etc. |
|
Applicazione |
Building, Industry, Machinery |
|
Certification |
ISO9001 |
|
OEM & ODM |
Acceptable |
Advantages of aluminum extrusion:
1. Saving mould cost and shorten production time;
2. Shorting design and assembling time;
3. Associated accessories are available as well to save your time to resource it;
4. Controlling cost and providing more efficient working project;
5. Improving your systems and space management with our professional technical team.
Who use?
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3D Printers
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CNC Engravers
-
Hot Wire Machines
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Laser Cutters
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Camera Sliders
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Workbench or Worktable
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Robotics
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Machine frames, guarding
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Conveyors
- And much more
Product Application:
Except the standard profiles, we offers service from tooling design for customized project, extrusion production, assembling, cutting, drill threading till packaging.
Our aluminum profile has a wide range of application, like Radiator, Assembly line, Frame system, Conveyors, Workbench, Machine Guards, Stairs & Platforms, Metal Fence, Display rack, Automotive, Motor aluminium housing, Bridge system, Vessel, Elevator, etc.
ABOUT US:
1. Rich experiences in this range (15 years)
2. Mass available stock for a fast shipping
3. NO MOQ, even 0.5 meter can be acceptable.
4. Supply both aluminium profiles AND related accessories
5. Welcome your CUSTOMISED design, OEM acceptable
6. Offer professional services from tooling design, extrusion production, assembling, cutting, drill threading till packaging. NEVER worry about quality and deadline.
RECOMMEND HOT SALE PRODUCT
You may allow to click the picture of each product on below for it’s details, or directly send me your request by click the INQUIRY for ALUMINIUM PROFILE & ACCESSORIES.
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Customer Comments:
PACKAGING
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FAQ
Q1: What’s the standard length of your aluminium profiles be shipping?
A: The standard length of aluminium profiles is 6571mm, we can cut to specific length as you need..
Q2: What’s your MOQ?
A: For our existing products, quantity has no restrictions and depends on your need.
Q3: Can you offer free sample?
A: Yes, we can provide free sample, but we should charge you the freight cost if you do not have an international express account for transfer.
Q4: What’s the lead time for small order and mass production?
A: 1~3 working days for small order, and 3~15 working days for mass production of material, and the final lead time will be subject to each individual invoice.
Q5: What certification do you have?
A: We have ISO 9001 certificate.
/* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Color: | Silver, Black, Blue, Customized |
|---|---|
| Temper: | T3-T8 |
| Unit Weight: | 4.50kg/M |
| Lead Time: | Within One Week |
| Materiale: | Aluminium Alloy 6063 T3 – T8 |
| Surface Treatment: | PVDF Coating/Power Coating/Colored Anodizing |
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

Applications and Maintenance of a Linear Rail
Whether you are looking to install a linear rail or you are looking for ways to maintain your existing one, there are some important factors to consider. In this article, you will learn about the applications for linear rails, the maintenance of a linear rail, and some of the common issues associated with linear guides.
Common issues with linear guides
Choosing the right linear guide can yield significant advantages in performance, cost and durability. However, it isn’t enough to just pick the right guide. To ensure maximum performance, you need to understand the components and technologies that go into the design. This article will highlight some of the most common problems associated with linear guides, and how to avoid them.
The most important thing to remember about a linear guide is that it is a component of a system. It should not be operated alone. If a linear guide fails, you’ll need to take steps to get it repaired.
A good way to gauge how well a guide will perform is to look at the load moments it carries while on a wall. This will tell you how much the guide can support over a full run of travel.
One of the most important things to consider is the type of mounting you use. It should match the precision of the guide unit. The mounting surface should be flat, and there should be no gaps or wiggles between the guide unit and the mounting surface.
The right kind of mounting will not only make installation easier, but will also ensure that your guide unit operates at its best. In addition, it can help prevent contamination from getting into the guide unit.
Another thing to consider is the quality of the lubricant. Linear guides are prone to corrosion, so it’s important to lubricate them regularly. You can do this by adding a high-quality lubricant that’s resistant to corrosive substances.
Using a linear guide with a good seal can help avoid corrosion. A good seal should have sealing lip that fits tightly around the ball guide profile. In addition, you should consider a thicker lubricant, such as calcium soap, as opposed to standard greases in wet environments.
Another thing to consider is how you can best align the guide unit. For example, you can use a high-speed end cap to reduce misalignment. This will reduce binding, as well as prevent a buildup of dirt and other debris between the guide unit and the mounting surface.
Common applications for linear rails
Across industrial applications, there are many uses for linear rails. Linear rails provide an extremely effective way of moving products and items through production processes. They offer excellent load capacity, low friction and high stiffness.
Linear rails can be manufactured in short or long lengths. These systems are ideal for moving loads from a few grams to thousands of kilograms. Depending on the specific application, the load capacity of the rail may vary.
Linear rails are commonly used in machine-tool applications and semiconductor manufacturing. Linear rails are also used for moving heavy equipment through factory floors. Linear rails are also used in advanced medical applications.
Linear rails can be used on a variety of surfaces. Depending on the type of application, the orientation of the rail may vary. This depends on the type of load and the amount of force being applied. It may also be influenced by the amount of dirt and dust.
Linear rails are designed to support loads from a few grams to thousands of kilograms. They are used in a variety of industries, including semiconductor manufacturing, packaging and medical devices. In many applications, linear rails are also used as the guide for actuators. Linear rails are a useful alternative to complex alignment operations.
Linear rails are often used in overhead transport systems. Linear rails are usually made of high strength steel and are profiled for maximum rigidity. They also have nickel-plating for corrosive environments.
Linear rails are often used in factory floors for heavy equipment, like moving robot arms. These systems can be used to move items around the factory floor or on high platforms above walkways. Linear rails are also used in the food and beverage industry. They are commonly used in weighing machines and CNC machines.
Linear rails are ideal for moving products with minimal friction. They also are used in semiconductor manufacturing, where the need for precision is crucial. Linear rails provide high load capacity and can accommodate travel speeds of up to five meters per second. Linear rails are also used in many transportation lines, including ice machines.
Cost of linear rails
Choosing the right linear rail can have a significant impact on the cost and performance of your system. Linear rails are used in all kinds of industries. They are highly effective when it comes to moving goods and equipment through the manufacturing process. They can be used vertically or horizontally. They are anchored to aluminum extrusion profiles for increased stiffness and accuracy.
The cost of linear rails can be justified by the advantages they offer. They provide high levels of rigidity and load capacity, making them a good option for moving products with minimal friction. Linear rails are also less likely to bend or vibrate. They also have a higher degree of precision and accuracy.
The price of linear rails is higher than those of linear rods. This is due to the fact that linear rails require more screws per unit length. They also require more support. If the rails are not supported, they will bend or rattle. The rails must be fully supported to achieve optimal precision.
Linear rails offer the most rigidity against gravity. They can support loads ranging from a few grams to several tons. They can also withstand moment and lift-off loads.
Rails can be installed using hex slot screws. They require more screws per unit length than rods. They also require accurate mounting surfaces. They can be installed by hand or with tools.
Linear rails are less likely to bend than rods, making them a better option for low precision applications. They are also cheaper.
However, they are not suitable for consumer applications. Rails are not as durable as rods and they are susceptible to bending and vibration. They are also subject to shipping oil and corrosion during transport and storage.
Linear rails cost around 2.5 to 4 times as much as linear rods. This is because they are more expensive to manufacture. They also require a more complex assembly process. They require hex slot screws along the length of the rail. It can be difficult to install.
The lifespan of linear rails is a frequently asked question among design engineers. It’s important to consider the factors that will reduce the lifespan.
Manutenzione delle rotaie lineari
Whether you’re working with a linear rail system in an industrial environment or a consumer application, proper maintenance is critical. A well-maintained linear guide rail can withstand loads from a few grams to thousands of kilograms, providing a high degree of rigidity and load capacity.
The most important aspect of maintenance for a linear guide rail is lubrication. Proper lubrication reduces friction and wear, resulting in longer life for your guide rail. The amount of lubrication required depends on the environment in which it is being used and the frequency of use. Generally, a general purpose lubricant is adequate for low speed low load applications. However, when long lubrication cycles are required, a specialised bearing lubricant is necessary.
The components of a linear guide rail are comprised of rail, carriage, linear guide block and load supporting rollers. The rails and guide blocks are made of hardened steel or anodized aluminum. The carriage has two “wings” that align with the rail channel. The rollers are made of softer materials such as stainless steel. A lint-free paper towel can be used to clean the groove in the rail.
If a linear guide rail is used incorrectly, it can corrode. In order to maintain the integrity of the rail, it is important to clean it thoroughly. The lubrication mechanism is often accessed via a syringe, so cleaning the rail is relatively easy. Clean the rail with a shop towel, and then apply grease to the moving parts. This will smooth the motion of the ball screw guides and prolong the life of the linear slides.
If the linear guide is used incorrectly, it can cause excessive misalignment, indentations, and corrosion. It is recommended that the rail be cleaned and lubricated as needed.
The type of linear rail you choose will depend on the type of load it can handle. Aside from the load capacity, it is also important to consider the cost of maintenance. Typically, a linear rail system is more expensive than other systems, so you’ll want to make sure you get the right rail for the job.

editor by Dream 2024-04-22
China high quality Cheap Price 30mm Linear Rail High Grade Wholesale manufacturer
Descrizione del prodotto
I have all the models you need, these are just some of them, please contact us now
HG Series
Basic Dynamic Load Range: 11.38 kN – 208.36 kN
The HG series linear guideways are designed with load capacity and rigidity higher than other similar products with circular-arc groove and structure optimization. It features equal load ratings in the radial, reverse radial and lateral directions, and self-aligning to absorb installation-error. Thus, the HG series linear guideways can achieve a long life with high speed, high accuracy and smooth linear motion.
EG Series
Basic Dynamic Load Range: 5.35 kN – 33.35 kN
The EG series is a low profile, high load capacity, and high rigidity guideway block. It also features an equal load rating in all 4 directions and self-aligning capability to absorb installation-error, allowing for higher accuracies. Additionally, the lower assembly height and the shorter length make the EG series more suitable for high-speed, automation machines and applications where space is limited.
CG Series
Superior Moment Load Capacity
The CG series linear guideways have moment load capacities up to 50% higher than standard HG Assemblies. The O-Type (back-to-back) bearing configuration and an integrated recirculation unit optimize bearing circulation greatly improving moment load capacities and promoting smooth motion. An optional stainless steel cover strip increases dust protection and promotes smooth block transition.
RG Series
Basic Dynamic Load Range: 11.3 kN – 275.3 kN
The RG series features a roller as the rolling element instead of steel balls. The RG series is designed with a 45-degree angle of contact. Elastic deformation of the linear contact surface, during loading, is greatly reduced thereby offering greater rigidity and higher load capacities in all 4 load directions. The RG series linear guideway offers high performance for high-precision manufacturing and can achieve a longer service life than traditional ball bearing linear guideways.
WE Series
Basic Dynamic Load Range: 5.23kN – 29.8 kN
The WE series features equal load ratings in the radial, reverse radial and the lateral direction with contact points at 45 degrees. This along with the wide rail, allows the guideway to be rated for high loads, moments and rigidity. By design, it has a self-aligning capability that can absorb most installation errors and can meet high accuracy standards. The ability to use a single rail and to have the low profile with a low center of gravity is ideal where space is limited and/or high moments are required.
MG Series
Basic Dynamic Load Range: 0.68 kN – 8.93 kN
The MG series is a miniature linear guideway that comes in a compact size with a Gothic CZPT contact design that offers high stiffness and high rigidity against moment loads in all directions. The MG series also offers anti-corrosion protection which all material is in a special grade of stainless steel for compatibility in various working environments. The MG series is available in a narrow block type (MGN) and also with an enlarged width (MGW).
QH Series
Basic Dynamic Load Range: 13.88kN – 108.72 kN
The development of Hiwin’s QH linear guideway is based on a four-row circular-arc contact. The QH series linear guideway with SynchMotion Technology offers smooth movement, superior lubrication, quieter operation and longer running life. Therefore the QH linear guideway has broad industrial applicability in the high-tech industry where high speed, low noise, and reduced dust generation is required. The QH series is interchangeable with the HG series.
QE Series
Basic Dynamic Load Range: 8.56 kN – 51.18 kN
The development of the Hiwin’s QE linear guideway is based on a four-row circular-arc contact. The QE series linear guideway with SynchMotion Technology offers smooth movement, superior lubrication, quieter operation and longer running life. Therefore the QE linear guideway has broad industrial applicability in the high-tech industry where high speed, low noise, and reduced dust generation is required. The QE series is interchangeable with the EG series.
QW Series
Basic Dynamic Load Range: 16 kN – 36.8 kN
The QW series linear guideway with SynchMotion Technology possesses all the advantages of the WE series, which features high moment rigidity and is suitable for single rail or space saving applications. With the SynchMotion technology it also provides quieter and smoother movement, superior lubrication, and longer service life. The QW series is interchangeable with the WE series.
QR Series
Basic Dynamic Load Range: 26.3 kN – 150.8 kN
QR series offers super high rigidity and very high load capacities. The QR series with SynchMotion Technology offers low friction, smooth movement, quieter operation and longer running life. In industries where high accuracy, low noise and high rigidity are required, the QR series is the ideal guideway choice. The QR series is interchangeable with the RG series.
PG Series
positioning guideway system integrates a linear guideway with a magnetic encoder. This solution offers the high stiffness and rigidity of a guideway while obtaining high precision from the magnetic encoder. The encoder is a non-contact measuring sensor and the magnetic strip is embedded to prevent possible damage caused from external materials, these features ensure a longer service life.
/* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Applicazione: | Gru da magazzino, gru navale, gru da piazzale merci, gru da cantiere, gru da officina |
|---|---|
| Materiale: | Aluminium |
| Structure: | Hook Crane |
| Installation: | Special Crane |
| Tipo di azionamento: | AC |
| Portata: | Light Level |
| Esempi: |
US$ 0.1/Piece
1 pezzo (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

Come ottenere la massima durata dalle vostre guide lineari
Che siate alla ricerca della robustezza dell'acciaio o della praticità dell'alluminio, le guide lineari possono rappresentare la soluzione ideale. Sono in grado di sopportare carichi sia verticali che verticali e possono essere ancorate per tutta la loro lunghezza a profili estrusi in alluminio.
Manutenzione delle rotaie lineari
A seconda dell'ambiente in cui vengono utilizzate le guide lineari, la quantità di manutenzione richiesta varierà. Tuttavia, ci sono alcuni accorgimenti fondamentali che è possibile adottare per garantire la massima durata delle guide.
Il primo passo è assicurarsi di installare le guide su una base solida e livellata. Se le guide non sono in piano, potrebbero formarsi delle ammaccature, che possono causare diversi problemi.
Il secondo passo è assicurarsi di utilizzare il lubrificante corretto. Il lubrificante giusto può fare la differenza nella durata delle guide. I migliori lubrificanti sono quelli progettati per resistere all'ambiente in cui verranno utilizzati. Idealmente, si dovrebbe utilizzare un olio leggero sulle piste di rotolamento dei cuscinetti a sfera.
Il modo migliore per assicurarsi di fare tutto correttamente è utilizzare un set di comparatori a quadrante per verificare che le rotaie siano in piano. Inoltre, è importante non fare affidamento esclusivamente sulla guida per mantenere le rotaie in piano. È anche consigliabile pulire le rotaie con un panno privo di lanugine.
La parte più importante di qualsiasi guida lineare è il suo sistema di lubrificazione. La maggior parte è dotata di un meccanismo di lubrificazione che semplifica la manutenzione. Se la tua non lo è, potresti prendere in considerazione un kit di grasso e lubrificazione di CZPT Automation.
Basso coefficiente di attrito
Che siate alla ricerca di una semplice guida lineare o di una guida sofisticata che supporti l'intera macchina, le opzioni a disposizione sono molteplici. Ognuna presenta vantaggi e svantaggi specifici. Esistono inoltre diversi livelli di precisione, velocità di funzionamento e capacità di carico.
Ad esempio, per le applicazioni di lavorazione dei metalli potrebbe essere necessario un tipo di acciaio resistente alla corrosione. Tuttavia, lo stesso tipo di acciaio può presentare un elevato coefficiente di attrito.
Per ridurre l'attrito, è possibile scegliere una catena con una maglia superiore a basso attrito. Queste catene possono raggiungere bassi coefficienti di attrito anche senza lubrificazione.
Un'altra opzione è quella di utilizzare una catena a rulli in plastica. Questa soluzione è ideale per applicazioni che richiedono uno slittamento minimo tra le superfici. Queste catene sono progettate per avere bassi coefficienti di attrito, grazie alla combinazione di stampaggio a compressione e matrice polimerica in resina epossidica.
Il catalogo del produttore elenca il coefficiente di attrito dei diversi tipi di catena superiore. Questo è un buon modo per vedere la differenza tra una guida a sfere e una guida a rulli.
Il coefficiente di attrito di una sfera d'acciaio rotolante è un buon indicatore delle sue prestazioni. Questo è uno dei motivi per cui vengono utilizzate nelle parti in movimento. Ed è anche uno dei motivi per cui la serie MSA di PMI è progettata con un basso coefficiente di attrito.
Un basso coefficiente di attrito può far risparmiare denaro ed energia. Inoltre, aumenta la durata della catena, del motore e degli altri componenti di movimento lineare.
Rigidità
Sia per le macchine utensili che per le applicazioni di consumo, la rigidità delle guide lineari è un fattore importante. Se una guida lineare non è allineata correttamente, può presentare un elevato grado di flessione, con conseguenti danni. Anche la durata di una guida lineare dipende da una serie di fattori.
Se la rotaia non è allineata correttamente, il carico applicato su di essa seguirà la superficie su cui è avvitata. Ciò può causare problemi di allineamento.
Se la rotaia ha un diametro grande, potrebbe essere più facile allinearla rispetto a una più piccola. Può anche essere utile far passare due rotaie in parallelo. Questo ridurrà al minimo la flessione.
La rigidità di una rotaia lineare è determinata anche dalla sua capacità di carico. La capacità di carico di una rotaia può variare da pochi grammi a migliaia di chilogrammi. Maggiore è la capacità di carico, migliore è la rigidità della rotaia.
Le guide lineari sono tipicamente utilizzate in sistemi di alta precisione. Possono sopportare carichi di momento e carichi a sbalzo. La durata di una guida lineare dipende anche dalla capacità di carico e dalla frequenza di utilizzo.
La rigidità di una rotaia può essere determinata anche dal suo angolo di contatto iniziale. In generale, una rotaia lineare ha una rigidità maggiore di una barra lineare.
La rigidezza di una rotaia lineare può essere misurata sia sperimentalmente che mediante un'analisi agli elementi finiti (FEA). Un'analisi FEA può essere utilizzata anche per determinare il comportamento statico e dinamico di una guida lineare. I risultati ottenuti possono essere impiegati per determinare la rigidezza di diverse strutture.
Possono essere ancorati per tutta la loro lunghezza a profili estrusi in alluminio.
Fortunatamente per noi, CZPT offre una vasta gamma di prodotti tra cui scegliere. Dalle onnipresenti estrusioni di alluminio con scanalatura a T ai più piccoli elementi decorativi, CZPT ha tutto ciò che vi serve. Non solo dispone di un'ampia selezione di elementi di fissaggio ed estrusioni di alluminio in magazzino e pronti per la spedizione, ma CZPT offre anche una serie di servizi e soluzioni per aiutarvi a portare a termine il lavoro nel modo giusto. Che siate alla ricerca di un nuovo magazzino o abbiate bisogno di aiuto per progettare e realizzare un prodotto personalizzato, CZPT può aiutarvi. Il nostro team di artigiani qualificati collaborerà con voi dall'inizio alla fine per garantire che il vostro progetto di estrusione di alluminio sia realizzato a regola d'arte. Nessun lavoro è troppo grande o troppo piccolo per noi. Tra i nostri clienti figurano produttori di prodotti di livello industriale e commerciale, nonché piccole imprese e privati che desiderano distinguersi. Dalle attrezzature per cucine professionali agli armadi industriali, possiamo aiutarvi a trasformare le vostre idee in realtà. Per ulteriori informazioni, visitate il nostro sito web per scoprire di più sulla nostra vasta gamma di prodotti e soluzioni. Il nostro team di esperti sarà lieto di rispondere a qualsiasi domanda sul vostro progetto di estrusione di alluminio e può anche assistervi con servizi di progettazione CAD. Qualunque siano le vostre esigenze, CZPT può aiutarvi. Gran parte del nostro successo deriva dalla nostra capacità di essere un fornitore unico per un'ampia gamma di soluzioni di estrusione.
Applicazioni
Che si tratti di movimentare un piccolo oggetto all'interno di un processo produttivo o un carico pesante, le guide lineari garantiscono un movimento fluido e stabile. Le applicazioni delle guide lineari sono molteplici, tra cui l'imballaggio, l'automazione industriale, la movimentazione di campioni medicali e altro ancora.
La struttura di base delle guide lineari è un insieme composto da sfere e rulli che supportano i carichi in movimento sulla guida. Le sfere offrono un'elevata capacità di carico, mentre i rulli forniscono una guida a basso attrito.
Le guide lineari sono tipicamente utilizzate nell'industria. Offrono un'ampia gamma di movimento e possono essere impiegate sia in verticale che in orizzontale. Sono inoltre disponibili in diverse dimensioni. Il loro impiego principale è in applicazioni che richiedono elevate prestazioni, alta precisione e una guida a basso attrito.
Le guide lineari possono essere rotonde o quadrate. Sono realizzate in acciaio ad alta resistenza, solitamente zincato. La lunghezza di una guida può variare da pochi centimetri a diversi metri. Le guide lineari sono dotate di un sistema di guida a basso attrito, che contribuisce a garantire un movimento fluido e affidabile. La capacità di carico di una guida può variare da pochi grammi a migliaia di chilogrammi.
I vantaggi delle guide lineari includono basso attrito, elevata capacità di carico e alta rigidità. Queste qualità le rendono una soluzione ideale per numerose applicazioni industriali. Sono anche note come assemblaggi lineari, guide lineari e sistemi di guida.
I sistemi di guide lineari sono noti con diversi nomi, tra cui guide lineari a cuscinetti a sfera, guide lineari e sistemi di guide lineari. Questi sistemi sono tipicamente utilizzati in applicazioni che richiedono una guida a basso attrito, ma risultano utili anche nei sistemi azionati pneumaticamente. Sono facili da installare e presentano un'elevata capacità di carico.

editor by Dream 2024-04-19
China factory Hot Sale SBR35 250mm Length Linear Motion Shaft Linear Guide Rail for Laser Machine belt driven linear rail
Descrizione del prodotto
Product Description
Specification
| Marca | NTL |
| Modello | SBR35 |
| Materiale | Aluminum Alloy |
Other Models
| Part Number | Shat Diametar |
Man dimansions(mm) | q Weigi |
||||||||||
| E | h | B | H | T | X | Y | C | S1 | S2 dlxd2xi | ||||
| S8R-C10 | 10 | 16 | 18 | 32 | 13 | 4 | 12.5 | 4.7 | 8.5 | 22 | 4.5 | 5×9×5 | 0.54 |
| SBR-C12G | 12 | 15 | 22.5 | 30 | 17 | 4 | 12 | 47 | 12 | 22 | 4.5 | 5×9×5 | 0.7 |
| SBR-C12 | 12 | 16 | 19 | 32 | 13 | 4 | 12.5 | 4.7 | 8.5 | 22 | φ4.5 | 5×9×5 | 0.7 |
| SBR-C13 | 13 | 16 | 19.5 | 32 | 13 | 4 | 12.5 | 4.7 | 8.5 | 22 | φ4.5 | 5×9×5 | 0.72 |
| SBR-C16 | 16 | 20 | 25 | 40 | 17.8 | 5 | 18.5 | 8 | 11.7 | 30 | 5.5 | 5.5×9.5×5.4 | 1.0 |
| S8R-C20 | φ20 | 22.5 | 27 | 45 | 177 | 5 | 19 | 8 | 10 | 30 | φ5.5 | 5.5×9.5×5.4 | 1.07 |
| S8R-C25 | 25 | 27.5 | 33 | 55 | 21 | 6 | 21.5 | 8 | 12 | 35 | φ8.6 | 6.6×11×6.5 | 1.5 |
| SBR-C30 | φ30 | 30 | 37 | 60 | 22.8 | 7 | 26.5 | 10.3 | 13 | 40 | φ6.6 | 6.6×11×6.5 | 1.9 |
| SBR-C35 | 35 | 325 | 43 | 65 | 26.5 | 8 | 28 | 13 | 15.5 | 45 | φ9 | 9×14×86 | 2.45 |
| SBH-C40 | 40 | 37.5 | 48 | 75 | 29.5 | 9 | 38 | 15.5 | 17 | 55 | φ9 | 9×14×8.6 | 3.25 |
| SBR-C50 | φ50 | 47.5 | 62 | 95 | 38.8 | 11 | 45 | 20 | 21 | 70 | φ11 | 11×17.5×10.8 | 5.26 |
| Support Rail Stand Lengths and Dimensions | ||||||||||
| Part Number | S8R-C10 | SBH-C12 | S8R-C13 | S8R-C16 | SBH-C20 | S8H-C25 | SBR-C30 | SBR-035 | SBH-C40 | SBH-C50 |
| Standard LengthL |
140 | 140 | 140 | 190 | 340 | 250 | 450 | 460 | 460 | 470 |
| 240 | 240 | 240 | 340 | 640 | 450 | 850 | 660 | 660 | 670 | |
| 860 | 870 | |||||||||
| 340 | 340 | 340 | 640 | 940 | B50 | 1250 | 860 | 1060 | 1070 | |
| 440 | 440 | 440 | 940 | 1240 | 1250 | 1450 | 1060 | 1260 | 1270 | |
| N | 20 | 20 | 20 | 20 | 20 | 25 | 25 | 30 | 30 | 35 |
| P | 100 | 100 | 100 | 150 | 150 | 200 | 200 | 200 | 200 | 200 |
| Max.Length5000 | 5000 5000 | 6000 | 6000 | 6000 | 6000 6000 | 6000 6000 | ||||
| (mm) | |||||||||||||
| W | G | A | B | T | M | Ss | J | K | S2 | C | Si | P | |
| SBR12S | 41 | 28 | 9 | 30 | 4 | 39 | M4X16 | 28 | 26 | 44.0 | 22 | M5 | 100 |
| SBR16S | 45 | 33 | 9 | 40 | 5 | 45 | M6X20 | 32 | 30 | 45.5 | 30 | M5 | 150 |
| SBR20S | 48 | 39 | 11 | 45 | 5 | 50 | M6X20 | 35 | 35 | 45.5 | 30 | M6 | 150 |
| SBR25S | 50 | 47 | 14 | 55 | 6 | 65 | M6X25 | 40 | 40 | 46.6 | 35 | M6 | 200 |
| SBR30S | 70 | 56 | 15 | 60 | 7 | 70 | M8X30 | 50 | 50 | φ6.6 | 40 | M8 | 200 |
| SBR35S | 80 | 63 | 18 | 65 | 8 | 80 | M8X35 | 55 | 55 | 49 | 45 | M8 | 200 |
| SBR40S | 90 | 72 | 20 | 75 | 9 | 90 | M8X40 | 65 | 65 | 49 | 55 | M10 | 200 |
| SBR50S | 120 | 90 | 25 | 95 | 11 | 110 | M10X50 | 94 | 80 | 411 | 70 | M10 | 200 |
Profilo Aziendale
HangZhou Terry Machinery Co.Ltd is a leading supplier of bearings, Linear motion system for CNC , Ball transfer Unit and transmission component .the growing
industrial and Favorable policy of HangZhou benefit the development of Terry Machinery .Our products are utilized in industrial, motorcycle, vehicle and Automation applications. Now we are exporting to 46 countries. including USA, GBR , Germany , Spain, Poland ,Turkey ect .The Goal of Terry Machinery to provide out customers
with widest range of products at competitive prices, backed with the best Service.OUR ADVANTAGE Products Our major products & Supplied:Meet all the international standards and ISO9001 -TS1694 Certificate Big volume in Stock, No MOQ required Personnel Our salespersons are well trained to accommodate your requests and speak English for your conveniences.Our technicians and engineers Experience in the Industry area exceeds 23 years Service &Quality control ,We supply detailed drawings and offer when ever necessary,We help all customers promote and improve their sales.We inspect every piece of products by ourselves before delivery.
production process
application
Packing &Delivery
Customer Praise
relared product
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FAQ
/* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Applicazione: | Gru da magazzino, gru navale, gru da piazzale merci, gru da cantiere, gru da officina |
|---|---|
| Materiale: | Aluminum Alloy |
| Structure: | Tyre Crane |
| Installation: | All-Terrain Crane |
| Tipo di azionamento: | AC |
| Portata: | Middle-Level |
| Esempi: |
US$ 9.21/Piece
1 pezzo (ordine minimo) | |
|---|

Applications and Maintenance of a Linear Rail
Whether you are looking to install a linear rail or you are looking for ways to maintain your existing one, there are some important factors to consider. In this article, you will learn about the applications for linear rails, the maintenance of a linear rail, and some of the common issues associated with linear guides.
Common issues with linear guides
Choosing the right linear guide can yield significant advantages in performance, cost and durability. However, it isn’t enough to just pick the right guide. To ensure maximum performance, you need to understand the components and technologies that go into the design. This article will highlight some of the most common problems associated with linear guides, and how to avoid them.
The most important thing to remember about a linear guide is that it is a component of a system. It should not be operated alone. If a linear guide fails, you’ll need to take steps to get it repaired.
A good way to gauge how well a guide will perform is to look at the load moments it carries while on a wall. This will tell you how much the guide can support over a full run of travel.
One of the most important things to consider is the type of mounting you use. It should match the precision of the guide unit. The mounting surface should be flat, and there should be no gaps or wiggles between the guide unit and the mounting surface.
The right kind of mounting will not only make installation easier, but will also ensure that your guide unit operates at its best. In addition, it can help prevent contamination from getting into the guide unit.
Another thing to consider is the quality of the lubricant. Linear guides are prone to corrosion, so it’s important to lubricate them regularly. You can do this by adding a high-quality lubricant that’s resistant to corrosive substances.
Using a linear guide with a good seal can help avoid corrosion. A good seal should have sealing lip that fits tightly around the ball guide profile. In addition, you should consider a thicker lubricant, such as calcium soap, as opposed to standard greases in wet environments.
Another thing to consider is how you can best align the guide unit. For example, you can use a high-speed end cap to reduce misalignment. This will reduce binding, as well as prevent a buildup of dirt and other debris between the guide unit and the mounting surface.
Common applications for linear rails
Across industrial applications, there are many uses for linear rails. Linear rails provide an extremely effective way of moving products and items through production processes. They offer excellent load capacity, low friction and high stiffness.
Linear rails can be manufactured in short or long lengths. These systems are ideal for moving loads from a few grams to thousands of kilograms. Depending on the specific application, the load capacity of the rail may vary.
Linear rails are commonly used in machine-tool applications and semiconductor manufacturing. Linear rails are also used for moving heavy equipment through factory floors. Linear rails are also used in advanced medical applications.
Linear rails can be used on a variety of surfaces. Depending on the type of application, the orientation of the rail may vary. This depends on the type of load and the amount of force being applied. It may also be influenced by the amount of dirt and dust.
Linear rails are designed to support loads from a few grams to thousands of kilograms. They are used in a variety of industries, including semiconductor manufacturing, packaging and medical devices. In many applications, linear rails are also used as the guide for actuators. Linear rails are a useful alternative to complex alignment operations.
Linear rails are often used in overhead transport systems. Linear rails are usually made of high strength steel and are profiled for maximum rigidity. They also have nickel-plating for corrosive environments.
Linear rails are often used in factory floors for heavy equipment, like moving robot arms. These systems can be used to move items around the factory floor or on high platforms above walkways. Linear rails are also used in the food and beverage industry. They are commonly used in weighing machines and CNC machines.
Linear rails are ideal for moving products with minimal friction. They also are used in semiconductor manufacturing, where the need for precision is crucial. Linear rails provide high load capacity and can accommodate travel speeds of up to five meters per second. Linear rails are also used in many transportation lines, including ice machines.
Cost of linear rails
Choosing the right linear rail can have a significant impact on the cost and performance of your system. Linear rails are used in all kinds of industries. They are highly effective when it comes to moving goods and equipment through the manufacturing process. They can be used vertically or horizontally. They are anchored to aluminum extrusion profiles for increased stiffness and accuracy.
The cost of linear rails can be justified by the advantages they offer. They provide high levels of rigidity and load capacity, making them a good option for moving products with minimal friction. Linear rails are also less likely to bend or vibrate. They also have a higher degree of precision and accuracy.
The price of linear rails is higher than those of linear rods. This is due to the fact that linear rails require more screws per unit length. They also require more support. If the rails are not supported, they will bend or rattle. The rails must be fully supported to achieve optimal precision.
Linear rails offer the most rigidity against gravity. They can support loads ranging from a few grams to several tons. They can also withstand moment and lift-off loads.
Rails can be installed using hex slot screws. They require more screws per unit length than rods. They also require accurate mounting surfaces. They can be installed by hand or with tools.
Linear rails are less likely to bend than rods, making them a better option for low precision applications. They are also cheaper.
However, they are not suitable for consumer applications. Rails are not as durable as rods and they are susceptible to bending and vibration. They are also subject to shipping oil and corrosion during transport and storage.
Linear rails cost around 2.5 to 4 times as much as linear rods. This is because they are more expensive to manufacture. They also require a more complex assembly process. They require hex slot screws along the length of the rail. It can be difficult to install.
The lifespan of linear rails is a frequently asked question among design engineers. It’s important to consider the factors that will reduce the lifespan.
Manutenzione delle rotaie lineari
Whether you’re working with a linear rail system in an industrial environment or a consumer application, proper maintenance is critical. A well-maintained linear guide rail can withstand loads from a few grams to thousands of kilograms, providing a high degree of rigidity and load capacity.
The most important aspect of maintenance for a linear guide rail is lubrication. Proper lubrication reduces friction and wear, resulting in longer life for your guide rail. The amount of lubrication required depends on the environment in which it is being used and the frequency of use. Generally, a general purpose lubricant is adequate for low speed low load applications. However, when long lubrication cycles are required, a specialised bearing lubricant is necessary.
The components of a linear guide rail are comprised of rail, carriage, linear guide block and load supporting rollers. The rails and guide blocks are made of hardened steel or anodized aluminum. The carriage has two “wings” that align with the rail channel. The rollers are made of softer materials such as stainless steel. A lint-free paper towel can be used to clean the groove in the rail.
If a linear guide rail is used incorrectly, it can corrode. In order to maintain the integrity of the rail, it is important to clean it thoroughly. The lubrication mechanism is often accessed via a syringe, so cleaning the rail is relatively easy. Clean the rail with a shop towel, and then apply grease to the moving parts. This will smooth the motion of the ball screw guides and prolong the life of the linear slides.
If the linear guide is used incorrectly, it can cause excessive misalignment, indentations, and corrosion. It is recommended that the rail be cleaned and lubricated as needed.
The type of linear rail you choose will depend on the type of load it can handle. Aside from the load capacity, it is also important to consider the cost of maintenance. Typically, a linear rail system is more expensive than other systems, so you’ll want to make sure you get the right rail for the job.

editor by CX 2024-04-16
China factory High Quality 3D Printer Mgn15h Mini Linear Guide Rail linear rail carriage
Descrizione del prodotto
Introduction
- The linear motion products and techonology are widely used for automatic mechanical facilities under the common accuracy.
- It features equal load ratings in the radial,reverse radial and lateral directions, and self-aligning to absorb installation-error.
- MG Series with tiny and light weight design is suitable for miniature equipment. All materials are special grade of stainless steel and alloy steel for anti-corrosion ability.
- Gothic CZPT contact design has high rigidity and accuracy characteristic in all directions. Steel balls are constrained by miniature retainer so without loosing balls when remove the block MG Series.
- The design of enlarged width, MGW Series, has increased capacity of moment load. Gothic CZPT contact design has high rigidity characteristic in all directions. Steel balls are constrained by miniature retainer so without loosing balls when removing the block away from the rail.
- All metal components are made of stainless steel/Chromed steel for anti-corrosion ability.
Applicazione
- PCB assembly equipments
- Medical equipments
- Robots
- Precision measuring equipments
- Office automation equipments
- Other miniature sliding mechanism
- Semiconductor equipments
Caratteristica
- MG Series linear guideway
- Design features of narrow type miniature guideways-MGN
- Tiny and light weight,suitable for miniature equipment.
- All matetials for block and rail,including ball retainers,are made in a special grade
- of stainless steel or Chromed steel for anti-corrosion purpose.
- Gothic CZPT contact design can sustain loads from all directions and offer high rigidty and high accuracy.
- Steel balls are held by a miniature retainer to avoid balls from falling out,even wen the blocks are removed from the rail.
- Interchangealbe types are available in certain precision grades.
* Dimension of Linear guideway
1. We have first-class testing equipment to detect linear guide various data parameters and control the quality of the linear guide.Whenever linear guides must first detected whether the quality is qualified and the unqualified linear guide will be eliminated directly.So we can get the trust of a large customer, and supply them for several years.
2. We have our own R & D capabilities, to help customers solve the problem of non-standard linear guides.We can also according to customer requirements change their own mark.
3. Price, our manufacture ensure that our prices across China are quite competitive.It is better for you to compare prices and quality among suppliers.But everyone knows you can not buy the highest quality products with the lowest price,but our product is the best quailty if you use equal price.
FAQ:
1. When can I get the quotation ?
We usually quote within 24 hours after we get your inquiry. If you are very urgent to get the price,please call us or tell us in your email so that we will regard your inquiry priority.
2. How can I get a sample to check your quality ?
After price confirmed,sample order is available to check our quality.
3. What is your main products ?
Linear motion systems,like lead screws, flexible coupling,Miniature linear guide rails,ball screws,linear rod shaft,ceramic bearings …etc. But also CNC machining centers and CNC machinable tooling boards.
4. Could you get a better price on your products ?
Yes,you can.We will give the best price on all of the products you need,which can help you to compete other companies in your markets.
5. What is the strength of your company ?
We have a engineer team,who have well experienced on product’s and machine designs.We can help you to solve the problems you meet.
Welcome to inquiry US!
/* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Applicazione: | Gru da magazzino, gru navale, gru da piazzale merci, gru da cantiere, gru da officina |
|---|---|
| Materiale: | Acciaio |
| Tipo di azionamento: | AC |
| Portata: | Middle-Level |
| Modalità di esecuzione: | Trasloco |
| Model No.: | Linear Guide Hgw |
| Esempi: |
US$ 15/Piece
1 pezzo (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

The Benefits of Using a Linear Rail in Your Industrial Machine
Generally speaking, linear rail is a material used for transportation. This material can be used in various different ways, including the transportation of goods and machinery. However, there are certain things that you should keep in mind before using it. These include the cost, the accuracy of travel, and the resistance to flexing.
Common uses
Using a linear rail can provide a variety of benefits. They provide low friction guidance, allow for a wide range of motion, and offer reliability. They are also compact and can be used for a variety of applications.
Linear rails are often used in automated assembly lines, conveyor systems, and machine tools. They also work well for pneumatic-driven systems. They can be used for moving loads from small to large in diameter and can handle speeds up to five meters per second. They are typically more expensive than other systems.
Linear rails come in a wide variety of designs. They can be mounted on a variety of surfaces and have different levels of load bearing capacity. They can also be used to connect multiple rails for very long travel lengths.
Linear rails are usually used in applications that require high accuracy. For example, they are often used in machine tools and laser welding machines. They are also used in the production of large objects. They are also used in 3D printing machines. They are also used in medical devices and special vehicles.
Linear rails require careful mounting. They need to be fully supported and have accurate mounting surfaces. They also need to be protected during assembly and shipping. Linear rails are typically made from steel or stainless steel. They are also available in a variety of sizes.
Linear slides are also known as linear motion bearings. They feature bearing contacts, plain surface bearings, recirculating or non-recirculating designs, and race profiles. The sliding contact guide rail is perfect for high accuracy applications.
Linear rails also have the capability to support overhung loads. They can be used alone or in combination with linear guides. They can withstand loads from a few grams to thousands of kilograms.
High level of travel accuracy
Using linear rails in your industrial machine will give you the benefits of a robust, well-supported design. They can handle loads of thousands of kilograms while reducing frictional drag. This is especially true for high-speed, heavy-duty applications.
The best part is that you can choose from a wide variety of options. From standard, multi-point, to end-to-end and even the modular type, there is a linear rail solution for your needs. Whether you want a low-cost solution or a high-end system, CZPT can help you with your industrial needs.
A high level of travel accuracy is a must for any linear stage. There are many factors to consider when choosing the best linear rails for your application. The best way to go about determining the best option is to determine your application’s specific needs and requirements. From there, the experts at CZPT can help you make a well-informed decision. They are experts in all things linear and can recommend the best options for your particular needs.
Aside from high travel accuracy, linear rails offer a multitude of other benefits. For instance, you can minimize the motion of the rails by mounting them in parallel. This will increase the life of the bearings while also reducing the deflection of the system as a whole. You can also choose a rail system that will accommodate overhung loads. This is especially true for linear applications that have high-speed, heavy-duty needs.
The high-tech industry has been abuzz with a number of new and exciting innovations. One such is the integration of an I-beam support with a linear guide system. The I-beam support is ideal for industrial applications, such as robotics.
Resistance to flexing
Besides being a spruced up version of the ancient horseshoe, the linear rail has some impressive properties, including its ability to bend without breaking, and a high degree of self-alignment. It also has the honor of being one of the only types of rails that will withstand a plethora of shocks and jolts, and has some of the lowest lifecycle costs in its class. A large number of rails are actually made from polymer rather than aluminum, but that is another story altogether. The most expensive rails are manufactured from aluminum. The best ones are made from a proprietary polymer, which is said to have the lowest lifecycle costs.
There are two main types of linear rails, the standard type which are fixed at one end, and the more modern and modern variant, which are self-aligned. The latter is actually more important than the former. A good rule of thumb is to consider the more expensive variants first, as they are suited to more rigorous testing and inspection.
Easy to machine
Choosing the right linear rail system depends on the specific needs of the enterprise. It is important to consider how long the rail will last, as well as other factors that can influence its lifespan.
Linear rail systems are designed to support the movement of equipment through production. The system is easy to maintain and is suitable for high-speed applications.
Linear rails are typically supported by aluminum extrusions. They are commonly fixed at each end of the rail. Linear rails can have short lengths or longer dimensions. They are commonly installed with hex slot screws along the length of the rail. Additional linear rail screws can be installed to increase the rigidity of the rail system.
Linear rails have higher load-bearing capacity than hard rails. Hard rails are used in heavy-duty applications, such as machining large molds. Linear rails are suitable for more precision applications, such as small precision molds.
Linear rails have higher accuracy. In addition, they provide a smooth motion. Linear rails also offer less resistance to bending and vibration. However, the use of linear rails requires more support during installation. In addition, the assembly process is tedious.
Linear rails can be used in a wide variety of industries. They are also useful in CNC machining. Most finishing machine tools are manufactured using high-precision linear rails.
Linear rails have higher requirements for processing and transportation. They can also be more expensive to maintain. However, they provide high-speed operation that improves precision. They are also easier to replace than hard track. The process is similar to replacing a screw.
Choosing a rail depends on the enterprise’s production. Some rails have high load-bearing capacity, while others are less expensive. The running speed of the rail system is also a factor.
Costo
Choosing the right rail can give significant advantages in both performance and durability. While there are many types of rails on the market, a good guideline can help you determine which one is best for your application.
The right rail can reduce your application’s total cost of ownership. However, you should be careful not to make the mistake of installing the wrong one. If you install the wrong rail, you can end up with corrosion, excessive misalignment, noise, and reduced life expectancy.
The cost of linear rails will vary depending on the length of the rail, the type of rail, and the material it is made of. However, the most cost-effective rail is one that is made of corrosion resistant steel alloys.
The cost of linear rails is also dependent on the size of the rail. Typically, larger runners are more effective for higher load capacity applications.
Linear rails can also be manufactured in short lengths. However, installing one of these rails is not easy. They have different tools and require a different assembly process.
The cost of linear rails is 2.5 to four times higher than that of rods. While the cost is high, the benefits can be significant. A linear rail provides high rigidity, high accuracy, and higher speed. They are also less likely to bend or deform under heavy load.
The cost of linear rails is often offset by the ability to achieve high speed and precision. However, the cost of installing these rails is not worth it. The same motor can achieve higher speeds using linear rods. However, installing linear rails is a much more difficult process.
The cost of linear rails also depends on the environment where they will be installed. If the rail is placed in a dirty or wet environment, it may lead to reduced precision, corrosion, and damage.

editor by CX 2024-04-16
China supplier Hot Selling Linear Shaft Rod Rail High Speed Manufacturers aluminium extrusion linear rail
Descrizione del prodotto
I have all the models you need, these are just some of them, please contact us now
| MODEL NO. | OUTER DIAMETER | DIAMETER TOLERANCE | LENGTH | DEPTH OF EFFECTIVE HARDENED LAYER | WEIGHT(kg/m) | |
| g6 | h6 | |||||
| SF6 | 6 | -0.004 -0.012 |
0 -0.008 |
100-2000 | >0.8 | 0.22 |
| SF8 | 8 | -0.005 -0.014 |
0 -0.009 |
100-2000 | 0.40 | |
| SF10 | 10 | -0.005 -0.014 |
0 -0.009 |
100-2000 | >1.0 | 0.62 |
| SF12 | 12 | -0.006 -0.017 |
0 -0.011 |
100-3000 | 0.89 | |
| SF13 | 13 | 100-3500 | 1.04 | |||
| SF16 | 16 | 100-4000 | >1.5 | 1.58 | ||
| SF20 | 20 | -0.007 -0.571 |
0 -0.013 |
100-6000 | 2.47 | |
| SF25 | 25 | 3.85 | ||||
| SF30 | 30 | >2.0 | 5.55 | |||
| SF35 | 35 | -0.009 -0.571 |
0 -0.016 |
7.55 | ||
| SF40 | 40 | >2.5 | 9.87 | |||
| SF50 | 50 | 15.4 | ||||
/* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Caratteristica: | Corrosion Resistant, High Temperature, High Speed |
|---|---|
| Function: | Ordinary |
| Flange Shape: | Cutting-Edge |
| Shape: | Straight |
| Series: | LM |
| Materiale: | Bearing Steel |
| Esempi: |
US$ 3/Piece
1 pezzo (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

Guida di contatto scorrevole su rotaia lineare
Che si tratti di guide a coda di rondine, guide di contatto scorrevoli, guide a cuscinetto a manicotto o guide a sezione scatolare, esamineremo alcune delle opzioni a vostra disposizione. Scoprirete a cosa servono, come possono esservi utili e come possono migliorare il vostro lavoro.
Binari a coda di rondine
Sul mercato sono disponibili diverse varietà di guide a coda di rondine. Tra queste, le guide standard a sezione quadrata e una variante più specializzata. Queste guide sono note per il loro aspetto elegante e robusto e possono sopportare carichi ancora più pesanti rispetto alle altre.
Le piattaforme lineari a coda di rondine compatte della serie DS sono le più piccole della gamma, pur mantenendo lo stesso meccanismo delle piattaforme a coda di rondine della serie MT. Scorrono lungo guide a coda di rondine precaricate di precisione, risultando la scelta ideale per applicazioni che richiedono elevate prestazioni in spazi limitati. Queste piattaforme sono inoltre meno soggette a urti rispetto ai modelli convenzionali.
Le piattaforme a coda di rondine della serie DS sono disponibili in diverse configurazioni XYZ, il che le rende ideali per applicazioni che richiedono movimenti estremamente fluidi e vibrazioni minime. Grazie al loro design modulare, queste piattaforme sono anche facili da integrare nel sistema. Ciò è particolarmente vero per la serie DS25, che presenta un ingombro inferiore rispetto alla serie MT.
Le piattaforme a coda di rondine compatte della serie DS rappresentano un passo avanti rispetto alle piattaforme a coda di rondine della serie MT. Ciò è dovuto alle loro guide a coda di rondine precaricate ad alta velocità e precisione. Queste piattaforme non sono solo leggere, ma anche silenziose, una caratteristica particolarmente utile nelle applicazioni medicali. Presentano il già citato design a basso profilo, nonché selle più spesse e robuste. Sono inoltre disponibili in due diverse corse.
Sebbene le guide a coda di rondine su binari lineari possano essere una buona scelta per il vostro prossimo progetto, è opportuno considerare alcuni fattori che possono ridurne la durata. Tra le cause più comuni di guasto vi sono abrasioni, corrosione e polvere. Potreste anche valutare l'utilizzo di una piattaforma da fissare al componente mobile del vostro sistema. Ciò vi consentirebbe di ampliare l'area di trasporto, mantenendo comunque il carico a portata di mano.
Le piattaforme a coda di rondine compatte della serie DS rappresentano un'ottima scelta per applicazioni che richiedono movimenti estremamente fluidi e un numero ridotto di componenti. Ciò è particolarmente vero per le piattaforme a coda di rondine della serie DS, che non utilizzano i tipici cuscinetti a rulli.
Guide a cuscinetti a manicotto
A seconda dell'applicazione, esistono diversi tipi di guide lineari. La più comune è la guida a cuscinetti a sfera, che utilizza due file lineari di cuscinetti a sfera per muovere un carrello. Questa configurazione offre un movimento fluido in un'unica direzione.
Un altro tipo di guida è la guida a coda di rondine. Essa presenta una fessura sulla base della guida e una linguetta sporgente a forma di V sulla sella. Questo design è più resistente rispetto ad altre guide e può essere utilizzato per applicazioni con carichi pesanti. Tuttavia, non può sopportare carichi elevati come le guide a sezione rettangolare, che prevedono una base e una sella di accoppiamento.
Un terzo tipo di slitta è la slitta a colonna cilindrica. È funzionalmente simile alla slitta a sezione quadrata, ma non possiede la stessa robustezza e rigidità. Solitamente è più costosa e più difficile da assemblare, sebbene offra una forma di movimento lineare meccanico più precisa.
La superficie interna di un cuscinetto a strisciamento lineare è generalmente costituita da una guida. Si tratta di un metodo comune per ridurre l'attrito tramite un rivestimento superficiale. Alcune di queste guide sono realizzate in CZPT, un materiale inerte agli acidi e ai solventi, progettato per funzionare in diversi ambienti.
Esistono diversi tipi di boccole, e ognuna può essere realizzata con una vasta gamma di leghe. Le boccole in bronzo sono progettate per un movimento fluido, mentre le boccole in plastica sono adatte per applicazioni a bassa velocità.
Per applicazioni che richiedono un funzionamento ad alta velocità, i cuscinetti lineari a manicotto possono essere realizzati con elementi volventi in ceramica. Questi offrono minore rumorosità e una migliore distribuzione del carico.
Un altro tipo di guida lineare è la guida a sezione scatolare. Essa comprende una base di accoppiamento e una sella. Viene spesso utilizzata per applicazioni gravose. Una terza sezione può essere fissata alla sella, estendendo la lunghezza della guida. Queste guide, una volta installate, offrono un profilo a T.
La guida a sezione quadrata è una scelta eccellente per applicazioni gravose. Offre un movimento lineare preciso e un'elevata capacità di carico. Può essere fresata, forata o filettata. Presenta un basso attrito e può sopportare forze in qualsiasi direzione.
Il design CZPT offre prestazioni eccellenti sia in ambienti lisci che in quelli più difficili. Inoltre, la sua lunghezza lo rende ideale per installazioni di grandi dimensioni.
Guide di contatto scorrevoli
La scelta di una guida di contatto scorrevole su una rotaia lineare può essere complessa. Data la varietà di opzioni disponibili, è importante comprenderne le differenze e i vantaggi che offrono.
Il primo aspetto da considerare è il materiale utilizzato. Acciaio inossidabile, alluminio o ghisa sono materiali comunemente impiegati per le guide di scorrimento. Questi materiali sono resistenti e in grado di sopportare carichi pesanti. Possono essere utilizzati anche in ambienti corrosivi.
Un altro fattore importante è il metodo di lubrificazione. La quantità di lubrificante necessaria è determinata in gran parte dal tipo di guida lineare e dal tipo di cuscinetti utilizzati. Le guide con cuscinetti a sfera in genere richiedono meno lubrificazione rispetto alle guide con cuscinetti lineari. Il metodo di lubrificazione è importante anche perché riduce l'attrito che causa l'usura.
L'aspetto più importante del metodo di lubrificazione è che sia facilmente accessibile e pulibile. Questo garantisce le migliori prestazioni della guida lineare. È inoltre possibile optare per un sistema di lubrificazione più performante per prolungarne la durata.
Un altro fattore importante è la dimensione dell'applicazione. Una maggiore capacità consentirà alla guida di trasportare un carico più pesante. È inoltre possibile scegliere una guida ad alta velocità se l'applicazione prevede velocità elevate. Anche la lunghezza della guida deve essere considerata. La lunghezza è solitamente determinata dalle dimensioni dell'applicazione. È anche possibile personalizzare la lunghezza della guida contattando l'ufficio vendite più vicino.
La differenza principale tra le guide a contatto scorrevole su rotaia lineare e le altre guide lineari risiede nell'entità dell'attrito. Maggiore è la forza applicata, maggiore sarà il coefficiente di attrito. Pertanto, questo tipo di guida non è adatto per applicazioni ad alta velocità.
La prima sfera di ricircolo è stata sviluppata da Thomson Linear. Si è trattato del primo elemento volvente commercializzato. La sfera ha un coefficiente di attrito molto inferiore rispetto a un rullo. Per questo motivo viene spesso utilizzata nelle applicazioni di controllo del movimento.
Un funzionamento ad alta velocità richiederà una lubrificazione maggiore rispetto a un funzionamento a bassa velocità. Il rivestimento E-DFO del lubrificante avrebbe una durata maggiore rispetto al rivestimento in fluororesina.
Binari per la linea di scatole
A differenza delle guide lineari convenzionali, che sono costituite da un sottile strato di olio lubrificante tra di esse, le guide a sezione scatolare scorrono per attrito radente. I sistemi a sezione scatolare sono realizzati in un materiale resistente, come l'acciaio, e sono in grado di gestire carichi più pesanti rispetto alle guide a coda di rondine. Sono inoltre più efficaci nell'assorbire i carichi d'urto. Tuttavia, la loro durata è inferiore a quella delle guide lineari. I centri di lavoro verticali con guide lineari sono spesso due o tre volte più veloci delle loro controparti a sezione scatolare.
Il materiale più comunemente utilizzato nelle guide lineari è l'acciaio. Solitamente viene prodotto con elevata precisione e successivamente classificato in base all'applicazione specifica. Le piastre di appoggio presentano transizioni fluide e possono sopportare carichi crescenti man mano che diventano convesse. Questa configurazione le rende ideali per la lavorazione dell'acciaio.
Sebbene la rotaia lineare abbia una maggiore capacità di carico, il sistema di guide a cassone rimane comunque relativamente piccolo. Le guide a cassone possono sopportare carichi maggiori rispetto alle guide a coda di rondine. Tuttavia, non sono in grado di gestire velocità di marcia elevate. Sono inoltre considerate più efficaci nel ridurre le vibrazioni.
I componenti principali di una guida lineare sono il carrello principale e i cuscinetti. Questi ultimi incorporano viti di potenza e cuscinetti a sfere. La differenza principale tra i due tipi di cuscinetti risiede nel fatto che i cuscinetti a sfere possiedono elementi volventi che riducono l'attrito. I cuscinetti a elementi volventi offrono inoltre un'elevata sensibilità e un basso attrito tra gli elementi volventi e la guida.
Le guide a cassone offrono anche una migliore capacità di smorzamento delle vibrazioni. Tuttavia, non sono ideali per le applicazioni di consumo. Sono inoltre molto più costose delle guide lineari. Il costo è compensato dal fatto che richiedono meno manutenzione. Si raccomanda pertanto l'utilizzo di sistemi a cassone in applicazioni gravose.
Le guide lineari rappresentano una valida alternativa alle guide a sezione scatolare. Tuttavia, richiedono un supporto completo durante l'assemblaggio e una maggiore lubrificazione. Inoltre, possono essere danneggiate dall'acqua e da altri solventi e necessitano di protezione durante il trasporto.
Le guide a scatola sono utilizzate in alcune macchine di grandi dimensioni, mentre le guide lineari sono impiegate in macchine più piccole. Questi tipi di guide sono generalmente utilizzati nei centri di lavoro per la produzione di componenti. Possono essere impiegati anche nelle macchine utensili per la sgrossatura.

editor by CX 2024-04-15
China Good quality Original CZPT Lm Linear Motion Guide Rail Hsr30lb CZPT 30lb for CNC Machine linear rail adjustment
Descrizione del prodotto
Japan CZPT LM Block / Carriage / Rail / Linear Xihu (West Lake) Dis.
| Procuct Name | Japan Original CZPT LM Xihu (West Lake) Dis. |
| Materiale | Chrome Steel/ Stainless Steel |
| Brand Name | THK |
| Features | High speed, energy saving |
HSR Series:
HSR15A HSR15B HSR15R HSR20A HSR20B HSR20R HSR25A HSR25B HSR25R
HSR30A HSR30B HSR30R HSR35A HSR35B HSR35R HSR45A HSR45B HSR45R
HSR20LA HSR20LB HSR20LR HSR25LA HSR25LB HSR25LR HSR30LA HSR30LB HSR30LR
HSR35LA HSR35LB HSR35LR HSR45LA HSR45LB HSR45LR
HSR15A1SS HSR15B1SS HSR15R1SS HSR20A1SS HSR20B1SS
HSR20R1SS HSR25A1SS HSR25B1SS HSR25R1SS HSR30A1SS
HSR30B1SS HSR30R1SS HSR35A1SS HSR35B1SS HSR35R1SS
HSR45A1SS HSR45B1SS HSR45R1SS HSR20LA1SS HSR20LB1SS
HSR20LR1SS HSR25LA1SS HSR25LB1SS HSR25LR1SS HSR30LA1SS
HSR30LB1SS HSR30LR1SS HSR35LA1SS HSR35LB1SS HSR35LR1SS
HSR45LA1SS HSR45LB1SS HSR45LR1SS
Applicazione:
About Us:
Established in China in 2016, Flow Tech represents around 30 leading suppliers and acts as their local sales agent. Products are divided into several business areas enabling the company to combined the advantage of being specialised in small areas with the benefits of being part of a large organisation. Further, with its ability to see the whole value chain and total costs, Flow Tech aims to improve its customers’ competitive advantage and profitability. The company’s ambition is to make life easier for its customers and to find the best and most cost-efficient solutions.
Why Choose Us?
Our Warehouse:
Packing and Delivery:
Packing:
Carton + Wooden Box + Pallet
FAQ:
Q: Which brands are you representing?
A: We are the official appointed agent of THK,HIWIN,PMI,TBI,CPC,CSK, etc.
D: Quali sono i tempi di produzione?
A: Generally 3-5 days if we get the stock.
D: Fornite campioni?
A: Yes, but they are not free of charge.
D: Quali sono le vostre condizioni di pagamento?
A: 30% come acconto e il saldo prima della spedizione.
D: Potete organizzare la consegna a domicilio?
A: Certo, possiamo fornire un preventivo basato sulla formula DDP (porta a porta, dazi doganali inclusi). /* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Caratteristica: | Vacuum, Magnetically, Low Temperature, Corrosion Resistant, High Temperature, High Speed |
|---|---|
| Function: | Super |
| Flange Shape: | Square |
| Shape: | Straight |
| Series: | LM |
| Materiale: | Bearing Steel |
| Esempi: |
US$ 30/Piece
1 pezzo (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

Utilizzo di una guida lineare "tradizionale" nella costruzione con stampante 3D
Utilizzare una guida lineare "tradizionale" nella costruzione di una stampante 3D è un ottimo modo per aggiungere un po' di robustezza al telaio, ma presenta alcuni svantaggi. Il seguente articolo spiegherà alcuni dei motivi per cui potresti voler prendere in considerazione un carrello e una guida scorrevoli.
Applicazioni
In sostanza, un sistema di guide lineari è un'apparecchiatura meccanica progettata per sostenere il movimento di un'attrezzatura. Il sistema utilizza una combinazione di guide lineari e cuscinetti per mantenere un movimento costante.
I sistemi a rotaia lineare trovano impiego in numerosi settori, dalla produzione ai trasporti. È fondamentale progettare il sistema in modo che sia adatto all'applicazione specifica. Alcune delle applicazioni più comuni includono il trasferimento di materiali, la movimentazione di campioni medici e l'automazione industriale.
Il tipo più comune di guida lineare è la guida a ricircolo di sfere. Le guide a ricircolo di sfere offrono numerosi vantaggi, tra cui il controllo del momento, un'elevata capacità di carico e la precisione. Tuttavia, presentano delle limitazioni in alcune applicazioni.
Nell'industria alimentare e delle bevande, sono necessari cuscinetti lineari speciali per resistere a condizioni difficili e per soddisfare gli standard di salute e sicurezza. Alcune applicazioni includono bilance, moduli di prelievo e posizionamento e sistemi di confezionamento.
Anche le guide lineari richiedono superfici di montaggio precise per garantire un movimento accurato. Sono disponibili in varie lunghezze e sono adatte alla maggior parte delle applicazioni.
Un sistema di guide lineari può essere utilizzato sia in orizzontale che in verticale. Garantisce un movimento fluido, riducendo l'attrito e minimizzando l'usura. I sistemi di guide lineari possono supportare carichi che vanno da pochi grammi a migliaia di chilogrammi. La guida stessa è realizzata in acciaio ad alta resistenza e può essere zincata per una maggiore durata.
I sistemi di guide lineari possono essere utilizzati in un'ampia varietà di settori, dalla produzione farmaceutica alla produzione di semiconduttori. Questi sistemi sono facili da installare e hanno un'elevata capacità di carico. Offrono elevata rigidità e capacità di carico e sono perfetti per movimentare carichi con attrito minimo. Inoltre, presentano una bassa resistenza all'attrito, aspetto importante nei sistemi azionati pneumaticamente.
L'utilizzo di guide lineari offre numerosi altri vantaggi, tra cui costi contenuti, elevata capacità di carico, basso attrito e ridotta manutenzione. Le guide sono realizzate in acciaio inossidabile o acciaio al carbonio.
Guide lineari CZPT
CZPT offre una gamma completa di guide lineari, slitte e carrelli adatti a quasi ogni applicazione. Che si tratti di assemblare un sistema di strumentazione medica ad alta tecnologia o di automatizzare la propria officina, CZPT ha l'attrezzatura giusta per portare a termine il lavoro. L'azienda offre un'ampia selezione di apparecchiature per il movimento lineare, dai cuscinetti lineari montabili ai gruppi di guide e carrelli miniaturizzati.
L'azienda offre anche una gamma completa di guide lineari e carrelli, dall'acciaio ad alta resistenza all'alluminio ad alta tecnologia. L'ampia selezione di prodotti per il movimento lineare è accessibile tramite il pratico sistema di ordinazione online. Sono inoltre disponibili diverse guide utili per aiutarvi a scegliere l'attrezzatura più adatta alle vostre esigenze.
La gamma di guide lineari e carrelli di CZPT comprende anche guide e carrelli miniaturizzati salvaspazio. Con una linea di prodotti che vanta oltre 500 dispositivi di movimentazione lineare, l'azienda offre soluzioni adatte a quasi ogni budget ed esigenza. I sistemi di guida lineare di CZPT sono progettati per garantire la massima efficienza e affidabilità in una vasta gamma di applicazioni. I prodotti di guida lineare di CZPT sono i migliori del settore. Una guida lineare CZPT è in grado di resistere a carichi di strappo e forze di coppia. Le sue prestazioni superiori possono essere mantenute in un ambiente pulito con una corretta manutenzione. Una guida ben mantenuta può durare molti anni.
CZPT offre una vasta gamma di soluzioni di guide lineari e carrelli estremamente performanti, adatte a qualsiasi applicazione. È possibile navigare per produttore o categoria per trovare ciò che si cerca. Dalle guide lineari forate e non forate ai carrelli, fino alle slitte di guida lineare, CZPT può contribuire al successo del vostro prossimo progetto. L'azienda offre i prezzi più competitivi del settore e i suoi prodotti sono realizzati negli Stati Uniti e in Canada.
Carrello scorrevole e binario
Che tu stia cercando un carrello e una guida lineari nuovi o usati, ci sono alcune cose da tenere a mente. Ad esempio, dovrai scegliere un materiale di base robusto, come granito o acciaio, in grado di sopportare il peso del carico. Inoltre, dovrai fissare saldamente i componenti lineari alla base.
Inoltre, sarà necessario un sistema di controllo per regolare il movimento del carrello. Questi sistemi possono essere controllati tramite comandi operatore o segnali di feedback provenienti da sensori. Se l'applicazione prevede un carico pesante, potrebbe essere opportuno valutare l'utilizzo di una rotaia profilata.
Un'altra opzione è rappresentata dalle guide a cuscinetti a manicotto. Queste guide sono progettate per essere semplici da utilizzare, ma non sono resistenti quanto altre tipologie di guide.
Le guide a cuscinetti a strisciamento sono tipicamente utilizzate in applicazioni leggere. Possono essere realizzate con diversi materiali, tra cui alluminio, acciaio o acciaio inossidabile. Queste guide possono essere dotate di azionamento a vite a ricircolo di sfere e motore lineare.
Queste guide possono anche essere dotate di cuscinetti a rulli. Queste sfere vengono utilizzate per sostenere il carico nel carrello. Ciò riduce l'attrito e garantisce un movimento più fluido.
Inoltre, queste guide possono essere lubrificate. Sono disponibili in diverse configurazioni, tra cui quelle a ricircolo e a non ricircolo. Nelle guide a non ricircolo, gli elementi volventi si muovono a metà della velocità del carrello. Nelle guide a ricircolo, gli elementi volventi seguono il percorso ad anello del carrello.
Alcune guide lineari offrono una varietà di materiali, tra cui acciaio inossidabile, alluminio e granito. Questi materiali possono essere personalizzati per soddisfare le vostre esigenze. Alcune possono anche avere caratteristiche progettate su misura, come un sistema di binari e cuscinetti, una piattaforma e unità di azionamento. Se cercate una soluzione economicamente vantaggiosa, potreste prendere in considerazione una guida lineare progettata su misura.
Unità di trasporto robotizzate
L'aggiunta di movimenti lineari a un sistema robotico è un modo efficace per migliorarne le prestazioni. Il robot può così movimentare pezzi più grandi e pesanti da e verso diverse macchine, aumentando la sua utilità. L'aggiunta di movimenti lineari incrementa anche il numero di attività che possono essere eseguite, migliorando la produttività del robot e massimizzando il ritorno sull'investimento.
L'unità di trasferimento robotizzata (RTU) è una soluzione efficace per aggiungere movimento lineare ai sistemi robotici. Aumenta l'efficienza dei robot a 6 assi consentendo loro di movimentare i pezzi lungo una linea di trasporto mobile. Le RTU sono utilizzate in applicazioni di movimentazione materiali come saldatura, verniciatura, ispezione e pallettizzazione.
Le unità di trasferimento robotizzate possono essere installate a pavimento o sollevate al di sopra dell'area di lavoro o del pavimento stesso. Ciò aumenta la libertà di movimento degli operatori, consentendo al contempo un migliore accesso ai macchinari da parte del personale di manutenzione. Inoltre, permettono di risparmiare spazio a terra e di spostare i materiali più vicino all'area di lavoro.
Le RTU (Robot Terminal Unit) vengono utilizzate per spostare i robot tra le postazioni di lavoro e nelle applicazioni di movimentazione dei materiali. Generalmente sono installate a pavimento oppure possono essere sollevate per risparmiare spazio e consentire una visuale dell'operazione.
Una tipica RTU (Robotic Transport Unit) comprende due unità di trasporto del pezzo. Ciascuna unità di trasporto del pezzo include un braccio robotico, una guida e un braccio montato in modo scorrevole. Ogni unità di trasporto del pezzo include anche un elettromagnete che spinge l'unità lungo la guida. Il braccio può ruotare o "capovolgersi" attorno a un asse orizzontale (R) e l'effettore finale può afferrare wafer (W) o ruotare attorno a un asse verticale (Z2).
Ciascuna unità di trasporto ha una dimensione esterna laterale di 640. Ciò consente di montare l'unità in modo scorrevole su entrambi i lati della struttura della guida.
Svantaggi dell'utilizzo di guide lineari "tradizionali" nella costruzione di una stampante 3D
Costruire una stampante 3D utilizzando una tradizionale guida lineare non è un'impresa per i deboli di cuore. Se state costruendo una stampante per uso personale, probabilmente dovrete apportare alcune modifiche per farla funzionare correttamente. Fortunatamente, esistono molte alternative al processo di costruzione convenzionale. Ad esempio, è possibile costruire una macchina con un estruso di alluminio anziché utilizzare la tradizionale plastica fusa. Questo permette di stampare una gamma più ampia di materiali e migliora la durata della macchina. In alternativa, si potrebbe utilizzare un estruso di alluminio con una ruota in Delrin per una migliore qualità di stampa.
Potresti anche costruire una stampante 3D da zero con un telaio personalizzato in alluminio. Questo materiale è un'ottima scelta se intendi stampare oggetti di grandi dimensioni. Inoltre, è leggero, il che si traduce in una migliore qualità di stampa e in un'esperienza di stampa più fluida. Utilizzare un profilo di alluminio per il telaio di una stampante 3D potrebbe farti risparmiare parecchio, se sai cosa stai facendo.
È sempre una buona idea informarsi bene prima di effettuare un acquisto. Il modo migliore per evitare di essere truffati è trovare un produttore affidabile e verificare le credenziali dell'azienda in merito ai suoi prodotti. Questo è particolarmente importante se si desidera acquistare una macchina per la stampa 3D di modelli personalizzati. Come per qualsiasi cosa, acquistare la stampante sbagliata per l'applicazione sbagliata può portare a conseguenze disastrose. Fortunatamente, è possibile evitare alcuni di questi problemi con un po' di ricerca e seguendo alcuni consigli. Se si desidera costruire la macchina dei propri sogni, è fondamentale dedicare del tempo a capire bene cosa si sta facendo.

editor by CX 2024-04-15
China wholesaler HGW45CC HGR45 CZPT Cnc Slide Router Linear Motion Guideways Rail with Hot selling
Descrizione del prodotto
| Model Number | H (mm) |
W (mm) |
B (mm) |
L (mm) |
G (mm) |
WR (mm) |
Block Weight (kg) |
Rail Weight (kg) |
| HGW15CC | 24 | 47 | 38 | 61.4 | 5.3 | 15 | 0.17 | 1.45 |
| HGW20CC | 30 | 63 | 53 | 77.5 | 12 | 20 | 0.4 | 2.21 |
| HGW25CC | 36 | 70 | 57 | 84 | 12 | 23 | 0.59 | 3.21 |
| HGW30CC | 42 | 90 | 72 | 97.4 | 12 | 28 | 1.09 | 4.47 |
| HGW35CC | 48 | 100 | 82 | 112.4 | 12 | 34 | 1.56 | 6.3 |
| HGW45CC | 60 | 120 | 100 | 139.4 | 12.9 | 45 | 2.79 | 10.41 |
| HGW55CC | 70 | 140 | 116 | 166.7 | 12.9 | 53 | 4.52 | 15.08 |
| HGW65CC | 90 | 170 | 142 | 200.2 | 12.9 | 63 | 9.17 | 21.18 |
Packing:
Please contact us for more pictures of different packing.
|
Universal Packing |
Without any logo on bearings or packing. |
|
CZPT Packing |
With our brand CZPT on bearings and packing. |
|
Customized Packing |
Depends on buyer’s requirements. |
|
Original Brand Packing |
Bearing and packing are both original. Please contact us for pictures. |
Certificate:
Our bearings comes with CE certificate and our company has been verified by SGS Group. Please contact us for clear certificate photos.
To get price list of linear gudies, please contact us. /* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Applicazione: | Warehouse Crane, Shipboard Crane, Goods Yard Crane, Building Crane, Workshop Crane, Automatic Machinery and Equipment |
|---|---|
| Materiale: | Acciaio |
| Structure: | Mechanical Equipment |
| Installation: | Automatic Machinery |
| Tipo di azionamento: | Rolling |
| Portata: | Livello di peso |
| Esempi: |
US$ 21.02/Piece
1 pezzo (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

How to Choose the Right Linear Rail for Your Fishing Rod
Compared to rods, linear rail is cheaper and offers a wide variety of applications. It is also corrosion resistant and has the ability to handle both tearing loads and torque forces.
A wide range of applications
Using a linear rail system is a good way to safely move things through a manufacturing process. They are used in a wide range of industries, and are especially helpful in moving items through packaging and production.
They are typically made from hardened materials such as steel, and have load-supporting balls on both sides. This helps them to handle loads from a few grams to thousands of kilograms, and can withstand overhung loads when paired with another rail.
Linear rails are also used in a variety of applications, including food and beverage production. In this industry, they are required to withstand harsh conditions and must adhere to local health and safety standards.
They are commonly used in weighing machines. They also find applications in CNC machines and moving robot arms in factory lines. The high level of rigidity and load capacity make them a good option for moving products with little friction.
Linear rails can be used vertically or horizontally. They are also a good choice for weight guidance when centered below the rail. They can join multiple rails for very long travel lengths, and can be joined to perform a seventh axis.
These rails can handle travel speeds of up to 5 m/s. They are commonly used in industrial applications, and can handle loads from a few grams to thousands. They are also useful for pneumatic and belt-driven systems, and are often used as actuator guide mechanisms.
There are many different types of linear rails. They range in size and length, and have a variety of processing methods. You can also find simple surface bearings, which are characterized by a low coefficient of friction.
For applications requiring precise positioning and precise travel accuracy, linear rail systems are the way to go. They provide the highest level of rigidity and are capable of achieving travel speeds of up to 5 m/s.
They provide large travel spaces
Various applications may call for the use of a linear rail. These can be square, rectangular or round in shape and can handle loads from a few grams to thousands of kilograms. They also have a long lifespan.
In a nutshell, a linear rail provides low friction guidance for a load. They are used in the industrial sector in a number of applications. Aside from the obvious one’s, a single linear rail can save valuable floor space. It also ostensibly has the trifecta of a runner, power screw and ball bearings.
Linear rails are not for the faint of heart. Aside from the obvious cost, you will also be expected to mount, support and install them properly. You should also consider the size, shape and quality of the components. They can be bought in any length, from a few inches to several feet. They are also made from a wide variety of materials. Some of the materials used include steel, aluminum, and polymers. They can be shaped and joined to achieve very long travel lengths. They are also susceptible to damage.
The name of the game is to choose a good set of quality linear guides. There are two types in common usage today. The first is a runner with ball bearings, and the second is a runner with rollers. The latter is the less expensive choice. Aside from the usual suspects, you can also choose a saddle or fixed slide. It’s a good idea to use them in pairs. They are also the best suited for heavy duty applications.
The most important factor to consider when selecting a linear rail is the load capacity. While a single linear rail can be used in many applications, multiple rails are the best option for the job.
They withstand both tearing loads and torque forces
Generally constructed from corrosion resistant steel, linear rails are sturdy and robust enough to handle a wide variety of applications. They are usually used on mechanical systems with high precision requirements. They also provide a smooth and accurate motion.
In order to achieve the highest level of efficiency, the rail must be accurately supported and installed. It may also require some form of lubrication. The design of the rail may be influenced by factors like size, shape, and frequency of use.
For instance, linear rails are often used for actuator guides. These guide mechanisms provide a smooth, reliable, and low-friction motion. A runner is inserted inside the rail and moves from front to back. The runner may have ball bearings or a pair of sleeve bearings.
Another notable feature of the linear rail is the ability to withstand torque and tearing forces. They are also capable of handling larger loads, providing greater stability to the entire system. The most important feature is the fact that they are easy to install and remove. They are also capable of achieving high speeds.
There are many types of linear rails to choose from. Some may be suitable for consumer applications, while others are more suited for industrial applications. Some of the common factors that affect the lifespan of a rail include size, frequency of use, and mounting. A single rail is a space saver, while dual rails maximize bearing life.
Some of the major components in a linear slide include the runner, the bearings, and the carriage. In addition to the runner, the slide may also feature the motor, power screw, or other components. Some of these features are the smallest relative to the overall linear slide.
They’re cheaper than rods
Choosing the best linear rails for your fishing rod is no small feat. You must understand the characteristics of various rails before you can find the one that best fits your needs. You may also want to consider choosing a rail that will last for many years. This is especially true if you are fishing in saltwater.
The best linear rails are designed with a variety of factors in mind. They will help you achieve precision and longevity. In addition, these guides are made of materials that are durable. They are also affordable. There are a variety of choices, including round and square rails.
The best rods have a good selection of features, including a good reel seat and flexible nickel/titanium snake guides. You should also look for a rod that has a smooth but firm handle and a rod that is easy to use. The best rods will also be a bit pricier, but you will not regret your investment.
The best rods use quality cork and stacks of smaller cork rings. The best rods have a cork handle that has a good feel. This handle has a big flare at the bottom and has narrow cork rings on the top. This handle is the best fly rod handle that you will find.
The best rods also have a well made reel seat that will hold firmly and easily. It should also have thin nylon spacers between the rings for a positive lock up. The reel seat should also be made from an anodized black aluminum up-lock seat with a synthetic gray insert.
The best rods also have reputable guide sets. This includes a new CERECOIL stripping guide made of nickel Titanium. This guide uses a multi-taper design that removes material from the weakest areas, thus improving dampening and recovery.
They’re corrosion-resistant
Stainless steel linear rails are essential in many industries, including vacuum applications, the pharmaceutical industry, and electronic circuit machines. They are also necessary for washing down cycles.
Stainless steel rails have excellent corrosion resistance. The steel surface is coated with an inert layer that prevents the rusting of the steel. Steel surfaces can rust over time, though, and rust can contaminate equipment. It’s important to check with your manufacturer about any corrosion resistance treatments that may be available.
Carbon steel linear bearings can be treated with hard chrome, black chrome, or a corrosion-resistant coating. These bearings are more expensive than those made of austenitic steel, but they provide similar corrosion resistance. They also have a lower hardness.
Silicon Nitride balls are another option. These balls are 40% lighter than steel, so they can carry higher loads without causing electrolysis. They’re also inert to chemicals and are capable of higher speeds. They’re available in closed or open designs. They come in four different sizes. They’re also coated with CZPT coating, which reduces the surface area of the balls in contact with the steel.
Another option is electroless nickel plating, which is inexpensive. This type of plating uses nickel instead of copper to prevent corrosion. It also offers a low friction coefficient.
Another option is drylin(r) linear technology, which combines the corrosion-resistance of thermoplastic bearing liners with shafting. This technology is ideal for chemical washdown environments, as well as those in saltwater environments. These systems also provide excellent rigidity and high load-bearing capacities.
Other types of linear guides are also available. Plain bearing guides may be appropriate for less expensive applications, while round shaft systems may be better for more expensive applications.

editor by CX 2024-04-13
China Best Sales Manufacturer Direct H Class P Class Precision Best Quality Linear Guide Rail linear rail accuracy class
Descrizione del prodotto
Descrizione del prodotto
TOCO Linear Motion Xihu (West Lake) Dis.way: HTH30
Applicazione:
1. Macchina di controllo automatico
2. Industria dei semiconduttori
3. Macchinari industriali generali
4. Apparecchiature mediche
5. Apparecchiature per l'energia solare
6. Macchina utensile
7. Sistema di parcheggio
8. Woodworking machinery
9. Handling equipment
10. Grinder machinery
11. Tool machinery
12. High-speed rail and aviation transportation equipment, etc.
| Marca | TOCO |
| Modello | HGH, HGW, EGH |
| Size customize | 15,20,25,30,35,45,55,65 |
| Style | With Flange or not ,butt Joint Process. |
| HS-CODE | 8487900000 |
| Imballaggio degli articoli | Sacchetto di plastica + cartoni o imballaggio in legno |
| Termini di pagamento | T/T, Western Union |
| Tempi di produzione | 5~7 days for sample, 15~30 days for the bulk |
| Campioni | Sample price range from $50 to $200. campione richiesta express pagamento da parte dei clienti |
| Applicazione | CNC machines, Printing Machine, Paper-processing machine Machine tool, Solar energy equipment, Medical equipment, General industry machinery. Parking system |
Features
1. Low frictional resistance.
The linear guideway is a design of rolling motion with a low friction coefficient, and the difference between dynamic and static friction is very small. The frictional resistance of a linear guideway is only 1/20th to 1/40th of that in a slide guide. Therefore, the stick-slip will not occur when submicron feeding is making.
2. High precision maintained for a long period
The linear guideway with good lubrication can be easily achieved by supplying grease through the grease nipple on the carriage or utilizing a centralized oil pumping system, thus the frictional resistance is decreased and the accuracy could be maintained for long period.
3. Suitable for high-speed operation
Due to the characteristic of low frictional resistance, the required driving force is much lower than in other systems, thus the power consumption is small. Moreover, the temperature rising effect is small even under high-speed operation.
4. Easy installation with interchangeability
Compared with the high-skill required scrapping process of conventional slide guide, the linear guideway can offer high precision even if the mounting surface is machined by milling or grinding. Moreover, the interchangeability of linear guideway gives convenience for installation and future maintenance.
Model detial:
Company information
TOCO Group is a professional manufacturer in linear motion components in China, mastering critical core technology, focusing on research and innovative design.It has a number of product design patents and with ISO9001 certification, who is named a national high-tech enterprise.At present, there are 2 major production factories with a total area of 13,000 square meters.Thanks to a strong technical and production team, CZPT can quickly provide high-performance and high-quality transmission components for global customers, which has been widely recognized by domestic and foreign customers.
TOCO MOTION brand product line is complete, the main products are: Mono stage, linear module, linear guide, Ball screw, Support unit, Rack and Pinion.The products are widely used in: 1. Automation equipment 2. Display and semiconductor equipment 3. Woodworking equipment 4. Medical equipment 5. Photovoltaic and new energy equipment 6. Laser equipment 7. Machine tool equipment 8. Equipment in the fields of aerospace and rail transit, etc.
TOCO products are exported to more than a dozen countries and regions overseas.
FAQ
1. Servizio:
a. Aiutare il cliente a scegliere il modello corretto
b. Un team di vendita professionale renderà il tuo acquisto un'esperienza piacevole.
2. Pagamento:
Ordine campione: Richiediamo il pagamento anticipato tramite bonifico bancario (T/T) al numero 100%. La spedizione del campione tramite corriere espresso richiede il pagamento da parte del cliente.
Ordine all'ingrosso: 30% Bonifico bancario anticipato, saldo tramite bonifico bancario alla presentazione della copia della polizza di carico.
Sono accettati i metodi di pagamento T/T, Paypal e Western Union.
3.Package & Shipping :
a.Package: Carton or wooden case.
b.Shipping: by express (DHL, TNT, FedEx, etc.) or by sea
4.Delievery :
Campione: 5-10 giorni lavorativi dopo la conferma del pagamento.
Bulk order :10-20 workdays after deposit received .
5. Guarantee time
CZPT offre una garanzia di qualità di 1 anno sui prodotti a partire dalla data di acquisto, ad eccezione dei danni causati da un uso improprio.
6.After sale-service
During warranty period, any quality problem of CZPT product, once confirmed, we will send a new 1 to replace.
/* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Applicazione: | Warehouse Crane, Shipboard Crane, Goods Yard Crane, Building Crane, Workshop Crane, CNC Machinery |
|---|---|
| Materiale: | Acciaio |
| Structure: | Other |
| Installation: | Other |
| Tipo di azionamento: | Other |
| Portata: | Livello di peso |
| Esempi: |
US$ 20/Piece
1 pezzo (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

The Benefits of Using a Linear Rail in Your Industrial Machine
Generally speaking, linear rail is a material used for transportation. This material can be used in various different ways, including the transportation of goods and machinery. However, there are certain things that you should keep in mind before using it. These include the cost, the accuracy of travel, and the resistance to flexing.
Common uses
Using a linear rail can provide a variety of benefits. They provide low friction guidance, allow for a wide range of motion, and offer reliability. They are also compact and can be used for a variety of applications.
Linear rails are often used in automated assembly lines, conveyor systems, and machine tools. They also work well for pneumatic-driven systems. They can be used for moving loads from small to large in diameter and can handle speeds up to five meters per second. They are typically more expensive than other systems.
Linear rails come in a wide variety of designs. They can be mounted on a variety of surfaces and have different levels of load bearing capacity. They can also be used to connect multiple rails for very long travel lengths.
Linear rails are usually used in applications that require high accuracy. For example, they are often used in machine tools and laser welding machines. They are also used in the production of large objects. They are also used in 3D printing machines. They are also used in medical devices and special vehicles.
Linear rails require careful mounting. They need to be fully supported and have accurate mounting surfaces. They also need to be protected during assembly and shipping. Linear rails are typically made from steel or stainless steel. They are also available in a variety of sizes.
Linear slides are also known as linear motion bearings. They feature bearing contacts, plain surface bearings, recirculating or non-recirculating designs, and race profiles. The sliding contact guide rail is perfect for high accuracy applications.
Linear rails also have the capability to support overhung loads. They can be used alone or in combination with linear guides. They can withstand loads from a few grams to thousands of kilograms.
High level of travel accuracy
Using linear rails in your industrial machine will give you the benefits of a robust, well-supported design. They can handle loads of thousands of kilograms while reducing frictional drag. This is especially true for high-speed, heavy-duty applications.
The best part is that you can choose from a wide variety of options. From standard, multi-point, to end-to-end and even the modular type, there is a linear rail solution for your needs. Whether you want a low-cost solution or a high-end system, CZPT can help you with your industrial needs.
A high level of travel accuracy is a must for any linear stage. There are many factors to consider when choosing the best linear rails for your application. The best way to go about determining the best option is to determine your application’s specific needs and requirements. From there, the experts at CZPT can help you make a well-informed decision. They are experts in all things linear and can recommend the best options for your particular needs.
Aside from high travel accuracy, linear rails offer a multitude of other benefits. For instance, you can minimize the motion of the rails by mounting them in parallel. This will increase the life of the bearings while also reducing the deflection of the system as a whole. You can also choose a rail system that will accommodate overhung loads. This is especially true for linear applications that have high-speed, heavy-duty needs.
The high-tech industry has been abuzz with a number of new and exciting innovations. One such is the integration of an I-beam support with a linear guide system. The I-beam support is ideal for industrial applications, such as robotics.
Resistance to flexing
Besides being a spruced up version of the ancient horseshoe, the linear rail has some impressive properties, including its ability to bend without breaking, and a high degree of self-alignment. It also has the honor of being one of the only types of rails that will withstand a plethora of shocks and jolts, and has some of the lowest lifecycle costs in its class. A large number of rails are actually made from polymer rather than aluminum, but that is another story altogether. The most expensive rails are manufactured from aluminum. The best ones are made from a proprietary polymer, which is said to have the lowest lifecycle costs.
There are two main types of linear rails, the standard type which are fixed at one end, and the more modern and modern variant, which are self-aligned. The latter is actually more important than the former. A good rule of thumb is to consider the more expensive variants first, as they are suited to more rigorous testing and inspection.
Easy to machine
Choosing the right linear rail system depends on the specific needs of the enterprise. It is important to consider how long the rail will last, as well as other factors that can influence its lifespan.
Linear rail systems are designed to support the movement of equipment through production. The system is easy to maintain and is suitable for high-speed applications.
Linear rails are typically supported by aluminum extrusions. They are commonly fixed at each end of the rail. Linear rails can have short lengths or longer dimensions. They are commonly installed with hex slot screws along the length of the rail. Additional linear rail screws can be installed to increase the rigidity of the rail system.
Linear rails have higher load-bearing capacity than hard rails. Hard rails are used in heavy-duty applications, such as machining large molds. Linear rails are suitable for more precision applications, such as small precision molds.
Linear rails have higher accuracy. In addition, they provide a smooth motion. Linear rails also offer less resistance to bending and vibration. However, the use of linear rails requires more support during installation. In addition, the assembly process is tedious.
Linear rails can be used in a wide variety of industries. They are also useful in CNC machining. Most finishing machine tools are manufactured using high-precision linear rails.
Linear rails have higher requirements for processing and transportation. They can also be more expensive to maintain. However, they provide high-speed operation that improves precision. They are also easier to replace than hard track. The process is similar to replacing a screw.
Choosing a rail depends on the enterprise’s production. Some rails have high load-bearing capacity, while others are less expensive. The running speed of the rail system is also a factor.
Costo
Choosing the right rail can give significant advantages in both performance and durability. While there are many types of rails on the market, a good guideline can help you determine which one is best for your application.
The right rail can reduce your application’s total cost of ownership. However, you should be careful not to make the mistake of installing the wrong one. If you install the wrong rail, you can end up with corrosion, excessive misalignment, noise, and reduced life expectancy.
The cost of linear rails will vary depending on the length of the rail, the type of rail, and the material it is made of. However, the most cost-effective rail is one that is made of corrosion resistant steel alloys.
The cost of linear rails is also dependent on the size of the rail. Typically, larger runners are more effective for higher load capacity applications.
Linear rails can also be manufactured in short lengths. However, installing one of these rails is not easy. They have different tools and require a different assembly process.
The cost of linear rails is 2.5 to four times higher than that of rods. While the cost is high, the benefits can be significant. A linear rail provides high rigidity, high accuracy, and higher speed. They are also less likely to bend or deform under heavy load.
The cost of linear rails is often offset by the ability to achieve high speed and precision. However, the cost of installing these rails is not worth it. The same motor can achieve higher speeds using linear rods. However, installing linear rails is a much more difficult process.
The cost of linear rails also depends on the environment where they will be installed. If the rail is placed in a dirty or wet environment, it may lead to reduced precision, corrosion, and damage.

editor by CX 2024-04-12
China Good quality Sliding Rail System Linear Motion Guide Rail SBR20 with SBR20uu drawer slide linear rail
Descrizione del prodotto
Sliding Rail System Linear Motion Xihu (West Lake) Dis. Rail SBR20 with SBR20uu
1. SCS6UU/L-SCS60UU/L
SBR12UU/L-SBR50UU/L
TBR16UU/L-TBR30UU/L
2. Delivery time: 2-15days
3. Low price&good quality&good service
As a professional linear motion products manufacturer with many years expriences, we could offer many kinds of linear rail and Linear motion bearings with good quality but more competitive price in this field.
Closed types: SCS6UU/LUU- SCS60UU/LUU
Open types: SBR12UU/LUU-SBR50UU/LUU
Open flange types: TBR16UU/LUU-TBR30UU/LUU
Caratteristica:
1. Complete sliding units system with high accurrfangce and can be moved without deflection
2. Long life use.
3…Prompt delivery and good service.
4. Stocking feet and low batch wholesale.
5. ISO9001: 2008, SGS quality certificates
6. Welcome to inquiry!
| LM linear bearing:
LM3UU, LM4UU, LM5UU, LM6UU, LM8UU, LM8S, LM10UU, LM12UU, LM13UU, LM16UU, LM20UU, LM25UU, LM30UU, LM35UU, LM40UU, LM50UU, LM60UU, LM80UU, LM100UU |
| LME linear bearing:
LME3UU, LME4UU, LME5UU, LME6UU, LME8UU, LME8S, LME10UU, LME12UU, LME13UU, LME16UU, LME20UU, LME25UU, LME30UU, LME35UU, LME40UU, LME50UU, LME60UU, LME80UU, LME100UU |
| LMB linear bearing: LMB4UU, LMB6UU, LMB8UU, LMB10UU, LMB12UU, LMB16UU, LMB24UU, LMB32UU |
| LM Open Series linear bearing: LM10OPUU, LM12OPUU, LM13OPUU, LM16OPUU, LM20OPUU, LM25OPUU, LM3OOPU, LM35OPUU, LM40OPUU, LM50OPUU, LM60OPUU, LM80OPUU, LM100OPUU |
| KH type linear bearing: KH0622PP, KH0824PP, KH1026PP, KH1228PP, KH1630PP, KH2030PP,
KH2540PP, KH3050PP, KH4060PP, KH5070PP |
| Stell Cage Linear Bearing:
LM8GA, LM10GA, LM12GA, LM16GA, LM20GA, LM25GA, LM30GA, LM35GA, LM40GA, LM50GA, LM60GA |
| SDM series Steel cage linear bearing(As same as Ease SDM series): SDM16, SDM20, SDM25, SDM30, SDM35, SDM40, SDM50, SDM60, SDM80, SDM100, SDM120, SDM150 |
| Flange Type Linear Bearing:
LMF6UU, LMF8UU, LMF10UU, LMF12UU, LMF13UU, LMF16UU, LMF20UU, LMF25UU, LMF30UU, LMF35UU, LMF40UU, LMF50UU, LMF60UU, LMF80UU, LMF100UU LMK6UU, LMK8UU, LMK10UU, LMK12UU, LMK13UU, LMK16UU, LMK20UU, LMK25UU, LMK30UU, LMK35UU, LMK40UU, LMK50UU, LMK60UU, LMK80UU, LMK100UU LMT6UU, LMT8UU, LMT10UU, LMT12UU, LMT13UU, LMT16UU, LMT20UU, LMT25UU, LMT30UU. |
| Linear Slide Unit:
1. Close Type: SC8UU, SC10UU, SC12UU, SC13UU, SC16UU, SC20UU, SC25UU, SC30UU, SC35UU, SC40UU, SC50UU, SC60UU (normal type) SC8WUU, SC10WUU, SC12WUU, SC13WUU, SC16WUU, SC20WUU, SC252UU, SC30WUU, SC35WUU, SC40WUU, SC50WUU (long type) SC8VUU, SC10VUU, SC12VUU, SC13VUU, SC16VUU, SC20VUU, SC25VUU, SC30VUU, SC35VUU, SC40VUU, SC50VUU(Short type) 2. Open Type: SBR10UU, SBR12UU, SBR13UU, SBR16UU, SBR20UU, SBR25UU, SBR30UU, SBR35UU, SBR40UU, SBR50UU(Normal type) SBR10LUU, SBR12LUU, SBR13LUU, SBR16LUU, SBR20LUU, SBR25LUU, SBR30LUU, SBR35LUU, SBR40LUU, SBR50LUU(Long type) TBR16UU, TBR20UU, TBR25UU, TBR30UU (This type with the flange at the pillow block) |
| Shaft Support: SK/SHF SHAFT SUPPORT: SK8, SK10, SK12, SK13, SK16, SK20, SK25, SK30, SK35, SK40, SK50, SK60 SHF8, SHF10, SHF12, SHF13, SHF16, SHF20, SHF25, SHF30, SHF35, SHF40, SHF50, |
/* 22 gennaio 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Caratteristica: | Vacuum |
|---|---|
| Function: | Super |
| Flange Shape: | Cutting-Edge |
| Shape: | Open |
| Series: | SBR |
| Materiale: | Bearing Steel |
| Esempi: |
US$ 4/Piece
1 pezzo (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

Choosing a Linear Rail
Whether you are using a linear rail for your business or home, you will find that there are some key considerations that you must keep in mind. These include the stability and accuracy of the system, as well as the cost of the rail.
Cost of linear rails
Choosing the right rail can be crucial to the performance and cost of a machine. There are many different types, with different levels of accuracy, load bearing capacity and rigidity. Some of the more common choices are drilled, profiled and undrilled.
The cost of linear rails can vary drastically depending on the type. Some are made from hardened steel, while others are fabricated from aluminum extrusions. Both types offer different advantages and disadvantages.
Rails that have been manufactured with aluminum extrusions will offer better rigidity. These rails also provide a larger range of motion.
Linear rails are generally used in mechanical systems that need high precision. These components must be fully supported and protected while being assembled. The assembly process is complex and time consuming.
These components are used in a wide variety of industrial applications. They can be used for transporting loads between two points or for guiding a moving part in linear motion.
Linear rails are usually manufactured from hardened steel, which is corrosion-resistant. Stainless steel is also commonly used. High-strength steel is also used. It is also known as cold drawn steel.
Rails have a high load bearing capacity and can handle loads from a few grams to a few tons. They offer smooth motion and can also be used to support overhung loads. Linear rails are generally used in automation machinery. They are also used in laser welding machines and bending machines.
Rigidità
Using a linear rail is a common solution for many industrial applications. These linear guides are known for their rigidity and load-bearing capabilities. They are designed to accommodate a wide variety of uses, including precision motion, high load capacities, and high speed operation.
These linear guides are available in various sizes and shapes, including cylindrical rollers, spherical balls, and race profiles. Each type offers different load capacities, speeds, and accuracy levels. They are typically used in applications that require precision, such as machine tools.
They are typically fixed at the ends. They are designed to transfer weights along a predetermined vertical or horizontal course. Linear rails are usually made of toughened steel. They require hex slot screws along the length of the rail. They are also used to guide actuators driven by screws or belts.
These linear guides are designed to offer high travel accuracy, which is important for many machine tools. They also offer high rigidity, which is needed to support heavy loads.
The stiffness of a linear rail is generally higher than that of a round rail. They can handle travel speeds up to 5 meters per second. They can support thousands of kilograms. They are also less likely to bend under heavy load, which can prevent misalignment problems.
Linear guides are often used in pneumatic-driven systems. They also have a rolling-friction operation mode. This reduces friction, which helps the machine tool to run smoothly.
Accuracy
Choosing the best linear rail depends on the application and the level of accuracy required. Some applications require high accuracy, while others are less demanding. A guide rail that has the right amount of preloading can minimize the effect of misalignment and sinking.
Rails are designed to withstand a variety of loads from a few grams to several tons. They can also handle moment and lift-off loads. Linear rails are made from high-strength steel that is galvanized.
A variety of processing methods are used to manufacture rails. Rails are available in square and round shapes. They can also be shaped to fit into smaller spaces.
The most accurate linear rail is the one that meets all of the above requirements. It can be difficult to know which rail is best for your application. It is important to consider the application and the total load conditions during the lifetime of the system.
It is also important to choose the most appropriate accuracy class for your application. Choosing the accuracy class of a rail is partially dependent on the positioning of the load and the mounting arrangement of the bearings.
For instance, the best accuracy class for a rail would be one that has a high preloading rate. This will increase the rigidity and minimize the effect of sinking. It will also increase the life of the component.
A linear rail that has a high preloading rate also has a higher accuracy class. This is because it will compensate for a lack of accuracy in the mounting surface.
Stability
Whether you’re moving items through a production process or handling heavy loads, you’ll appreciate the reliability and precision of a linear rail. It’s also important to consider the stability of your linear rail.
It’s important to design your linear rail with a complete support structure to prevent deflection. This may include mounting it on an I-beam support. This supports heavy loads and eliminates deflection concerns.
Linear rails also offer a wide range of motion, including the ability to support overhung loads. They are also suitable for guiding weights, providing a smooth motion in a single axis.
A single linear rail can also be used to guide actuators driven by screws or belts. These are commonly used in industrial applications. However, they may not be ideal for consumer applications.
For a more robust solution, you may consider using a dual rail. Dual linear rails maximize bearing life, and minimize deflection. These can also be anchored to aluminum extrusion profiles to improve stiffness.
Various types of materials can have a dramatic impact on the cost and performance of a project. These include stainless steel, which is corrosion-resistant and cold drawn. Other options include aluminum extrusion profiles and cylinders, which can reduce mechanical stresses.
In addition, the level of stiffness of your rail may be critical to its operation. In some applications, a rail may have to flex slightly in one plane. Using a cylinder instead of a sphere can also reduce play.
Carrello scorrevole e binario
Known for their rigidity and load-bearing capabilities, linear slides are ideal for applications that require repeatable motion. However, these units have a variety of components that can complicate their integration into your machine. Fortunately, there are a variety of products available that can help you find the right slide.
The main components of a linear slide include the carriage, bearings, guide rails, and control systems. The bearing system determines the accuracy of the slide.
Bearings can be a variety of shapes, including cylindrical and ball. They can be plain or filled with PTFE, ceramic, or metal. A ball screw drive with a motor may be necessary for stiff, reproducible slides. In less expensive applications, a round shaft system may be the best option.
Typically, the carriage is attached to the rail. The rail supports the carriage while it moves, and it can be a round rail, profiled rail, or linear stage. The carriage can be made of stainless steel, aluminum, granite, or other materials. Its threaded holes can be used for mounting tooling.
Carriage designs can be based on plain bearings, ball bearings, or cross rollers. Aside from simple surface bearings, these designs require lubrication. In less expensive applications, plain bearings may be sufficient.
Roller bearings are cylindrical roller load-bearing elements. They are used in track rollers and cam rollers. The rollers are inside the carriage and rotate with the carriage.
Applicazioni
Whether you’re building an industrial automation system or simply need to move a load, the right linear guide can be a valuable tool. The benefits include high load capacity, reduced friction, high rigidity and increased accuracy.
The applications of linear rails can range from simple machine-tool applications to advanced medical applications. The most common applications include transportation and industrial machinery. However, the applications can also be found in the consumer space. Consumer health monitoring devices are a great example of applications that take advantage of linear motion.
Linear rails are a linear assembly consisting of load-supporting balls on each side and a pair of parallel tracks. Depending on the size and type of application, the load capacity can range from a few grams to several tons.
Linear rails are typically made from high-strength steel, which is profiled or galvanised. The rail is then cut to a specified length. Depending on the size, the cost of a linear guide rail will vary.
The linear rail’s name is a mouthful, but there are several models to choose from. Profiled rail guides are most suitable for high load applications.
The CZPT is a great choice for heavy-duty applications. It’s easily weldable, and can be ground smooth for easy transitions. The rail can be extended to long travel lengths.
The linear rail’s most notable attribute is its ability to withstand overhung loads. The rail can also handle moment and horizontal loads.

editor by CX 2024-04-11
China wholesaler Mgn7h Mgn7r CNC Machine Tool Miniature Linear Motion Guide Rail with Slide Block dual linear rail
Descrizione del prodotto
Product Description
Specification
| Marca | CSZBTR |
| Modello | MGN15H |
| Materiale | Chrome steel |
Other Models
| Model No. | Dimensions of Assembly (mm) |
Dimensions of Block [mm] | Dimensions of Rail (mml | Mounting Bolt for Rail |
Weight | ||||||||||||||||||
| Block
kg |
Railt | ||||||||||||||||||||||
| H | H; | N | W | B | B, | C | L | L | G | G. | Mxl | . | H | D | h | d | P | E | Imm] | ||||
| MGN5C | 6 | 1.5 | 3.5 | 12 | 8 | 2 | 9.6 | 16 | 0.8 | M2x1.5 | 1 | 5 | 3.6 | 3.6 | 0.8 | 2.4 | 15 | 5 | M2x6 | 0.008 | 0.15 | ||
| MGN7C | 8 | 1.5 | 5 | 17 | 12 | 2.5 | 8
13 |
13.5
21.8 |
22.5
30.8 |
1.2 | M2x2.5 | 1.5 | 7 | 4.8 | 4.2 | 2.3 | 2.4 | 15 | 5 | M2x6 | 0.571 | 0.22 | |
| MGN7H | 0.015 | ||||||||||||||||||||||
| MGN9C | 10 | 2 | 5.5 | 20 | 15 | 2.5 | 10
16 |
18.9 | 28.9 | 1.4 | M3x3 | 1.8 | 9 | 6.5 | 6 | 3.5 | 3.5 | 20 | 7.5 | M3x8 | 0.016 | 0.38 | |
| MGN9H | 29.9 | 39.9 | 0.026 | ||||||||||||||||||||
| MGN12C | 13 | 3 | 7.5 | 27 | 20 | 3.5 | 15
20 |
21.7
32.4 |
34.7 | 02 | M3x3.5 | 2.5 | 12 | 8 | 6 | 4.5 | 3.5 | 25 | 10 | M3x8 | 0.034 | 0.65 | |
| MGN12H | 45.4 | 0.054 | |||||||||||||||||||||
| MGN15C | 16 | 4 | 8.5 | 32 | 25 | 3.5 | 20
25 |
26.7
43.4 |
42.1
58.8 |
4.5 | M3 | M3x4 | 3 | 15 | 10 | 6 | 4.5 | 3.5 | 40 | 15 | M3x10 | 0.059 | 1.06 |
| MGN15H | 0.092 | ||||||||||||||||||||||
Profilo Aziendale
HangZhou Terry Machinery Co.Ltd is a leading supplier of bearings, Linear motion system for CNC , Ball transfer Unit and transmission component .the growing
industrial and Favorable policy of HangZhou benefit the development of Terry Machinery .Our products are utilized in industrial, motorcycle, vehicle and Automation applications. Now we are exporting to 46 countries. including USA, GBR , Germany , Spain, Poland ,Turkey ect .The Goal of Terry Machinery to provide out customers
with widest range of products at competitive prices, backed with the best Service.OUR ADVANTAGE Products Our major products & Supplied:Meet all the international standards and ISO9001 -TS1694 Certificate Big volume in Stock, No MOQ required Personnel Our salespersons are well trained to accommodate your requests and speak English for your conveniences.Our technicians and engineers Experience in the Industry area exceeds 23 years Service &Quality control ,We supply detailed drawings and offer when ever necessary,We help all customers promote and improve their sales.We inspect every piece of products by ourselves before delivery.
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| Applicazione: | Gru da magazzino, gru navale, gru da piazzale merci, gru da cantiere, gru da officina |
|---|---|
| Materiale: | acciaio inossidabile |
| Structure: | Tyre Crane |
| Installation: | All-Terrain Crane |
| Tipo di azionamento: | AC |
| Portata: | Middle-Level |
| Esempi: |
US$ 6.25/Piece
1 pezzo (ordine minimo) | |
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Choosing a Linear Rail
Whether you are using a linear rail for your business or home, you will find that there are some key considerations that you must keep in mind. These include the stability and accuracy of the system, as well as the cost of the rail.
Cost of linear rails
Choosing the right rail can be crucial to the performance and cost of a machine. There are many different types, with different levels of accuracy, load bearing capacity and rigidity. Some of the more common choices are drilled, profiled and undrilled.
The cost of linear rails can vary drastically depending on the type. Some are made from hardened steel, while others are fabricated from aluminum extrusions. Both types offer different advantages and disadvantages.
Rails that have been manufactured with aluminum extrusions will offer better rigidity. These rails also provide a larger range of motion.
Linear rails are generally used in mechanical systems that need high precision. These components must be fully supported and protected while being assembled. The assembly process is complex and time consuming.
These components are used in a wide variety of industrial applications. They can be used for transporting loads between two points or for guiding a moving part in linear motion.
Linear rails are usually manufactured from hardened steel, which is corrosion-resistant. Stainless steel is also commonly used. High-strength steel is also used. It is also known as cold drawn steel.
Rails have a high load bearing capacity and can handle loads from a few grams to a few tons. They offer smooth motion and can also be used to support overhung loads. Linear rails are generally used in automation machinery. They are also used in laser welding machines and bending machines.
Rigidità
Using a linear rail is a common solution for many industrial applications. These linear guides are known for their rigidity and load-bearing capabilities. They are designed to accommodate a wide variety of uses, including precision motion, high load capacities, and high speed operation.
These linear guides are available in various sizes and shapes, including cylindrical rollers, spherical balls, and race profiles. Each type offers different load capacities, speeds, and accuracy levels. They are typically used in applications that require precision, such as machine tools.
They are typically fixed at the ends. They are designed to transfer weights along a predetermined vertical or horizontal course. Linear rails are usually made of toughened steel. They require hex slot screws along the length of the rail. They are also used to guide actuators driven by screws or belts.
These linear guides are designed to offer high travel accuracy, which is important for many machine tools. They also offer high rigidity, which is needed to support heavy loads.
The stiffness of a linear rail is generally higher than that of a round rail. They can handle travel speeds up to 5 meters per second. They can support thousands of kilograms. They are also less likely to bend under heavy load, which can prevent misalignment problems.
Linear guides are often used in pneumatic-driven systems. They also have a rolling-friction operation mode. This reduces friction, which helps the machine tool to run smoothly.
Accuracy
Choosing the best linear rail depends on the application and the level of accuracy required. Some applications require high accuracy, while others are less demanding. A guide rail that has the right amount of preloading can minimize the effect of misalignment and sinking.
Rails are designed to withstand a variety of loads from a few grams to several tons. They can also handle moment and lift-off loads. Linear rails are made from high-strength steel that is galvanized.
A variety of processing methods are used to manufacture rails. Rails are available in square and round shapes. They can also be shaped to fit into smaller spaces.
The most accurate linear rail is the one that meets all of the above requirements. It can be difficult to know which rail is best for your application. It is important to consider the application and the total load conditions during the lifetime of the system.
It is also important to choose the most appropriate accuracy class for your application. Choosing the accuracy class of a rail is partially dependent on the positioning of the load and the mounting arrangement of the bearings.
For instance, the best accuracy class for a rail would be one that has a high preloading rate. This will increase the rigidity and minimize the effect of sinking. It will also increase the life of the component.
A linear rail that has a high preloading rate also has a higher accuracy class. This is because it will compensate for a lack of accuracy in the mounting surface.
Stability
Whether you’re moving items through a production process or handling heavy loads, you’ll appreciate the reliability and precision of a linear rail. It’s also important to consider the stability of your linear rail.
It’s important to design your linear rail with a complete support structure to prevent deflection. This may include mounting it on an I-beam support. This supports heavy loads and eliminates deflection concerns.
Linear rails also offer a wide range of motion, including the ability to support overhung loads. They are also suitable for guiding weights, providing a smooth motion in a single axis.
A single linear rail can also be used to guide actuators driven by screws or belts. These are commonly used in industrial applications. However, they may not be ideal for consumer applications.
For a more robust solution, you may consider using a dual rail. Dual linear rails maximize bearing life, and minimize deflection. These can also be anchored to aluminum extrusion profiles to improve stiffness.
Various types of materials can have a dramatic impact on the cost and performance of a project. These include stainless steel, which is corrosion-resistant and cold drawn. Other options include aluminum extrusion profiles and cylinders, which can reduce mechanical stresses.
In addition, the level of stiffness of your rail may be critical to its operation. In some applications, a rail may have to flex slightly in one plane. Using a cylinder instead of a sphere can also reduce play.
Carrello scorrevole e binario
Known for their rigidity and load-bearing capabilities, linear slides are ideal for applications that require repeatable motion. However, these units have a variety of components that can complicate their integration into your machine. Fortunately, there are a variety of products available that can help you find the right slide.
The main components of a linear slide include the carriage, bearings, guide rails, and control systems. The bearing system determines the accuracy of the slide.
Bearings can be a variety of shapes, including cylindrical and ball. They can be plain or filled with PTFE, ceramic, or metal. A ball screw drive with a motor may be necessary for stiff, reproducible slides. In less expensive applications, a round shaft system may be the best option.
Typically, the carriage is attached to the rail. The rail supports the carriage while it moves, and it can be a round rail, profiled rail, or linear stage. The carriage can be made of stainless steel, aluminum, granite, or other materials. Its threaded holes can be used for mounting tooling.
Carriage designs can be based on plain bearings, ball bearings, or cross rollers. Aside from simple surface bearings, these designs require lubrication. In less expensive applications, plain bearings may be sufficient.
Roller bearings are cylindrical roller load-bearing elements. They are used in track rollers and cam rollers. The rollers are inside the carriage and rotate with the carriage.
Applicazioni
Whether you’re building an industrial automation system or simply need to move a load, the right linear guide can be a valuable tool. The benefits include high load capacity, reduced friction, high rigidity and increased accuracy.
The applications of linear rails can range from simple machine-tool applications to advanced medical applications. The most common applications include transportation and industrial machinery. However, the applications can also be found in the consumer space. Consumer health monitoring devices are a great example of applications that take advantage of linear motion.
Linear rails are a linear assembly consisting of load-supporting balls on each side and a pair of parallel tracks. Depending on the size and type of application, the load capacity can range from a few grams to several tons.
Linear rails are typically made from high-strength steel, which is profiled or galvanised. The rail is then cut to a specified length. Depending on the size, the cost of a linear guide rail will vary.
The linear rail’s name is a mouthful, but there are several models to choose from. Profiled rail guides are most suitable for high load applications.
The CZPT is a great choice for heavy-duty applications. It’s easily weldable, and can be ground smooth for easy transitions. The rail can be extended to long travel lengths.
The linear rail’s most notable attribute is its ability to withstand overhung loads. The rail can also handle moment and horizontal loads.

editor by CX 2024-04-11